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<option value="acoustics"> Acoustics </option>
<option value="amh"> Acta Microbiologica Hellenica (AMH) </option>
<option value="actuators"> Actuators </option>
<option value="admsci"> Administrative Sciences </option>
<option value="adolescents"> Adolescents </option>
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<option value="antibodies"> Antibodies </option>
<option value="antioxidants"> Antioxidants </option>
<option value="applbiosci"> Applied Biosciences </option>
<option value="applmech"> Applied Mechanics </option>
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<option value="applnano"> Applied Nano </option>
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<option value="asi"> Applied System Innovation (ASI) </option>
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<option value="aquacj"> Aquaculture Journal </option>
<option value="architecture"> Architecture </option>
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<option value="automation"> Automation </option>
<option value="axioms"> Axioms </option>
<option value="bacteria"> Bacteria </option>
<option value="batteries"> Batteries </option>
<option value="behavsci"> Behavioral Sciences </option>
<option value="beverages"> Beverages </option>
<option value="BDCC"> Big Data and Cognitive Computing (BDCC) </option>
<option value="biochem"> BioChem </option>
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<option value="biologics"> Biologics </option>
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<option value="blsf"> Biology and Life Sciences Forum </option>
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<option value="biomedicines"> Biomedicines </option>
<option value="biomedinformatics"> BioMedInformatics </option>
<option value="biomimetics"> Biomimetics </option>
<option value="biomolecules"> Biomolecules </option>
<option value="biophysica"> Biophysica </option>
<option value="biosensors"> Biosensors </option>
<option value="biotech"> BioTech </option>
<option value="birds"> Birds </option>
<option value="blockchains"> Blockchains </option>
<option value="brainsci"> Brain Sciences </option>
<option value="buildings"> Buildings </option>
<option value="businesses"> Businesses </option>
<option value="carbon"> C </option>
<option value="cancers"> Cancers </option>
<option value="cardiogenetics"> Cardiogenetics </option>
<option value="catalysts"> Catalysts </option>
<option value="cells"> Cells </option>
<option value="ceramics"> Ceramics </option>
<option value="challenges"> Challenges </option>
<option value="ChemEngineering"> ChemEngineering </option>
<option value="chemistry"> Chemistry </option>
<option value="chemproc"> Chemistry Proceedings </option>
<option value="chemosensors"> Chemosensors </option>
<option value="children"> Children </option>
<option value="chips"> Chips </option>
<option value="civileng"> CivilEng </option>
<option value="cleantechnol"> Clean Technologies (Clean Technol.) </option>
<option value="climate"> Climate </option>
<option value="ctn"> Clinical and Translational Neuroscience (CTN) </option>
<option value="clinpract"> Clinics and Practice </option>
<option value="clockssleep"> Clocks & Sleep </option>
<option value="coasts"> Coasts </option>
<option value="coatings"> Coatings </option>
<option value="colloids"> Colloids and Interfaces </option>
<option value="colorants"> Colorants </option>
<option value="commodities"> Commodities </option>
<option value="complications"> Complications </option>
<option value="compounds"> Compounds </option>
<option value="computation"> Computation </option>
<option value="csmf"> Computer Sciences & Mathematics Forum </option>
<option value="computers"> Computers </option>
<option value="condensedmatter"> Condensed Matter </option>
<option value="conservation"> Conservation </option>
<option value="constrmater"> Construction Materials </option>
<option value="cmd"> Corrosion and Materials Degradation (CMD) </option>
<option value="cosmetics"> Cosmetics </option>
<option value="covid"> COVID </option>
<option value="crops"> Crops </option>
<option value="cryo"> Cryo </option>
<option value="cryptography"> Cryptography </option>
<option value="crystals"> Crystals </option>
<option value="cimb"> Current Issues in Molecular Biology (CIMB) </option>
<option value="curroncol"> Current Oncology </option>
<option value="dairy"> Dairy </option>
<option value="data"> Data </option>
<option value="dentistry"> Dentistry Journal </option>
<option value="dermato"> Dermato </option>
<option value="dermatopathology"> Dermatopathology </option>
<option value="designs"> Designs </option>
<option value="diabetology"> Diabetology </option>
<option value="diagnostics"> Diagnostics </option>
<option value="dietetics"> Dietetics </option>
<option value="digital"> Digital </option>
<option value="disabilities"> Disabilities </option>
<option value="diseases"> Diseases </option>
<option value="diversity"> Diversity </option>
<option value="dna"> DNA </option>
<option value="drones"> Drones </option>
<option value="ddc"> Drugs and Drug Candidates (DDC) </option>
<option value="dynamics"> Dynamics </option>
<option value="earth"> Earth </option>
<option value="ecologies"> Ecologies </option>
<option value="econometrics"> Econometrics </option>
<option value="economies"> Economies </option>
<option value="education"> Education Sciences </option>
<option value="electricity"> Electricity </option>
<option value="electrochem"> Electrochem </option>
<option value="electronicmat"> Electronic Materials </option>
<option value="electronics"> Electronics </option>
<option value="ecm"> Emergency Care and Medicine </option>
<option value="encyclopedia"> Encyclopedia </option>
<option value="endocrines"> Endocrines </option>
<option value="energies"> Energies </option>
<option value="esa"> Energy Storage and Applications (ESA) </option>
<option value="eng"> Eng </option>
<option value="engproc"> Engineering Proceedings </option>
<option value="entropy"> Entropy </option>
<option value="environsciproc"> Environmental Sciences Proceedings </option>
<option value="environments"> Environments </option>
<option value="epidemiologia"> Epidemiologia </option>
<option value="epigenomes"> Epigenomes </option>
<option value="ebj"> European Burn Journal (EBJ) </option>
<option value="ejihpe"> European Journal of Investigation in Health, Psychology and Education (EJIHPE) </option>
<option value="fermentation"> Fermentation </option>
<option value="fibers"> Fibers </option>
<option value="fintech"> FinTech </option>
<option value="fire"> Fire </option>
<option value="fishes"> Fishes </option>
<option value="fluids"> Fluids </option>
<option value="foods"> Foods </option>
<option value="forecasting"> Forecasting </option>
<option value="forensicsci"> Forensic Sciences </option>
<option value="forests"> Forests </option>
<option value="fossstud"> Fossil Studies </option>
<option value="foundations"> Foundations </option>
<option value="fractalfract"> Fractal and Fractional (Fractal Fract) </option>
<option value="fuels"> Fuels </option>
<option value="future"> Future </option>
<option value="futureinternet"> Future Internet </option>
<option value="futurepharmacol"> Future Pharmacology </option>
<option value="futuretransp"> Future Transportation </option>
<option value="galaxies"> Galaxies </option>
<option value="games"> Games </option>
<option value="gases"> Gases </option>
<option value="gastroent"> Gastroenterology Insights </option>
<option value="gastrointestdisord"> Gastrointestinal Disorders </option>
<option value="gastronomy"> Gastronomy </option>
<option value="gels"> Gels </option>
<option value="genealogy"> Genealogy </option>
<option value="genes"> Genes </option>
<option value="geographies"> Geographies </option>
<option value="geohazards"> GeoHazards </option>
<option value="geomatics"> Geomatics </option>
<option value="geometry"> Geometry </option>
<option value="geosciences"> Geosciences </option>
<option value="geotechnics"> Geotechnics </option>
<option value="geriatrics"> Geriatrics </option>
<option value="glacies"> Glacies </option>
<option value="gucdd"> Gout, Urate, and Crystal Deposition Disease (GUCDD) </option>
<option value="grasses"> Grasses </option>
<option value="hardware"> Hardware </option>
<option value="healthcare"> Healthcare </option>
<option value="hearts"> Hearts </option>
<option value="hemato"> Hemato </option>
<option value="hematolrep"> Hematology Reports </option>
<option value="heritage"> Heritage </option>
<option value="histories"> Histories </option>
<option value="horticulturae"> Horticulturae </option>
<option value="hospitals"> Hospitals </option>
<option value="humanities"> Humanities </option>
<option value="humans"> Humans </option>
<option value="hydrobiology"> Hydrobiology </option>
<option value="hydrogen"> Hydrogen </option>
<option value="hydrology"> Hydrology </option>
<option value="hygiene"> Hygiene </option>
<option value="immuno"> Immuno </option>
<option value="idr"> Infectious Disease Reports </option>
<option value="informatics"> Informatics </option>
<option value="information"> Information </option>
<option value="infrastructures"> Infrastructures </option>
<option value="inorganics"> Inorganics </option>
<option value="insects"> Insects </option>
<option value="instruments"> Instruments </option>
<option value="iic"> Intelligent Infrastructure and Construction </option>
<option value="ijerph"> International Journal of Environmental Research and Public Health (IJERPH) </option>
<option value="ijfs"> International Journal of Financial Studies (IJFS) </option>
<option value="ijms"> International Journal of Molecular Sciences (IJMS) </option>
<option value="IJNS"> International Journal of Neonatal Screening (IJNS) </option>
<option value="ijpb"> International Journal of Plant Biology (IJPB) </option>
<option value="ijt"> International Journal of Topology </option>
<option value="ijtm"> International Journal of Translational Medicine (IJTM) </option>
<option value="ijtpp"> International Journal of Turbomachinery, Propulsion and Power (IJTPP) </option>
<option value="ime"> International Medical Education (IME) </option>
<option value="inventions"> Inventions </option>
<option value="IoT"> IoT </option>
<option value="ijgi"> ISPRS International Journal of Geo-Information (IJGI) </option>
<option value="J"> J </option>
<option value="jal"> Journal of Ageing and Longevity (JAL) </option>
<option value="jcdd"> Journal of Cardiovascular Development and Disease (JCDD) </option>
<option value="jcto"> Journal of Clinical & Translational Ophthalmology (JCTO) </option>
<option value="jcm"> Journal of Clinical Medicine (JCM) </option>
<option value="jcs"> Journal of Composites Science (J. Compos. Sci.) </option>
<option value="jcp"> Journal of Cybersecurity and Privacy (JCP) </option>
<option value="jdad"> Journal of Dementia and Alzheimer's Disease (JDAD) </option>
<option value="jdb"> Journal of Developmental Biology (JDB) </option>
<option value="jeta"> Journal of Experimental and Theoretical Analyses (JETA) </option>
<option value="jfb"> Journal of Functional Biomaterials (JFB) </option>
<option value="jfmk"> Journal of Functional Morphology and Kinesiology (JFMK) </option>
<option value="jof"> Journal of Fungi (JoF) </option>
<option value="jimaging"> Journal of Imaging (J. Imaging) </option>
<option value="jintelligence"> Journal of Intelligence (J. Intell.) </option>
<option value="jlpea"> Journal of Low Power Electronics and Applications (JLPEA) </option>
<option value="jmmp"> Journal of Manufacturing and Materials Processing (JMMP) </option>
<option value="jmse"> Journal of Marine Science and Engineering (JMSE) </option>
<option value="jmahp"> Journal of Market Access & Health Policy (JMAHP) </option>
<option value="jmp"> Journal of Molecular Pathology (JMP) </option>
<option value="jnt"> Journal of Nanotheranostics (JNT) </option>
<option value="jne"> Journal of Nuclear Engineering (JNE) </option>
<option value="ohbm"> Journal of Otorhinolaryngology, Hearing and Balance Medicine (JOHBM) </option>
<option value="jpm"> Journal of Personalized Medicine (JPM) </option>
<option value="jpbi"> Journal of Pharmaceutical and BioTech Industry (JPBI) </option>
<option value="jor"> Journal of Respiration (JoR) </option>
<option value="jrfm"> Journal of Risk and Financial Management (JRFM) </option>
<option value="jsan"> Journal of Sensor and Actuator Networks (JSAN) </option>
<option value="joma"> Journal of the Oman Medical Association (JOMA) </option>
<option value="jtaer"> Journal of Theoretical and Applied Electronic Commerce Research (JTAER) </option>
<option value="jvd"> Journal of Vascular Diseases (JVD) </option>
<option value="jox"> Journal of Xenobiotics (JoX) </option>
<option value="jzbg"> Journal of Zoological and Botanical Gardens (JZBG) </option>
<option value="journalmedia"> Journalism and Media </option>
<option value="kidneydial"> Kidney and Dialysis </option>
<option value="kinasesphosphatases"> Kinases and Phosphatases </option>
<option value="knowledge"> Knowledge </option>
<option value="labmed"> LabMed </option>
<option value="laboratories"> Laboratories </option>
<option value="land"> Land </option>
<option value="languages"> Languages </option>
<option value="laws"> Laws </option>
<option value="life"> Life </option>
<option value="limnolrev"> Limnological Review </option>
<option value="lipidology"> Lipidology </option>
<option value="liquids"> Liquids </option>
<option value="literature"> Literature </option>
<option value="livers"> Livers </option>
<option value="logics"> Logics </option>
<option value="logistics"> Logistics </option>
<option value="lubricants"> Lubricants </option>
<option value="lymphatics"> Lymphatics </option>
<option value="make"> Machine Learning and Knowledge Extraction (MAKE) </option>
<option value="machines"> Machines </option>
<option value="macromol"> Macromol </option>
<option value="magnetism"> Magnetism </option>
<option value="magnetochemistry"> Magnetochemistry </option>
<option value="marinedrugs"> Marine Drugs </option>
<option value="materials"> Materials </option>
<option value="materproc"> Materials Proceedings </option>
<option value="mca"> Mathematical and Computational Applications (MCA) </option>
<option value="mathematics"> Mathematics </option>
<option value="medsci"> Medical Sciences </option>
<option value="msf"> Medical Sciences Forum </option>
<option value="medicina"> Medicina </option>
<option value="medicines"> Medicines </option>
<option value="membranes"> Membranes </option>
<option value="merits"> Merits </option>
<option value="metabolites"> Metabolites </option>
<option value="metals"> Metals </option>
<option value="meteorology"> Meteorology </option>
<option value="methane"> Methane </option>
<option value="mps"> Methods and Protocols (MPs) </option>
<option value="metrics"> Metrics </option>
<option value="metrology"> Metrology </option>
<option value="micro"> Micro </option>
<option value="microbiolres"> Microbiology Research </option>
<option value="micromachines"> Micromachines </option>
<option value="microorganisms"> Microorganisms </option>
<option value="microplastics"> Microplastics </option>
<option value="minerals"> Minerals </option>
<option value="mining"> Mining </option>
<option value="modelling"> Modelling </option>
<option value="molbank"> Molbank </option>
<option value="molecules"> Molecules </option>
<option value="mti"> Multimodal Technologies and Interaction (MTI) </option>
<option value="muscles"> Muscles </option>
<option value="nanoenergyadv"> Nanoenergy Advances </option>
<option value="nanomanufacturing"> Nanomanufacturing </option>
<option value="nanomaterials"> Nanomaterials </option>
<option value="ndt"> NDT </option>
<option value="network"> Network </option>
<option value="neuroglia"> Neuroglia </option>
<option value="neurolint"> Neurology International </option>
<option value="neurosci"> NeuroSci </option>
<option value="nitrogen"> Nitrogen </option>
<option value="ncrna"> Non-Coding RNA (ncRNA) </option>
<option value="nursrep"> Nursing Reports </option>
<option value="nutraceuticals"> Nutraceuticals </option>
<option value="nutrients"> Nutrients </option>
<option value="obesities"> Obesities </option>
<option value="oceans"> Oceans </option>
<option value="onco"> Onco </option>
<option value="optics"> Optics </option>
<option value="oral"> Oral </option>
<option value="organics"> Organics </option>
<option value="organoids"> Organoids </option>
<option value="osteology"> Osteology </option>
<option value="oxygen"> Oxygen </option>
<option value="parasitologia"> Parasitologia </option>
<option value="particles"> Particles </option>
<option value="pathogens"> Pathogens </option>
<option value="pathophysiology"> Pathophysiology </option>
<option value="pediatrrep"> Pediatric Reports </option>
<option value="pets"> Pets </option>
<option value="pharmaceuticals"> Pharmaceuticals </option>
<option value="pharmaceutics"> Pharmaceutics </option>
<option value="pharmacoepidemiology"> Pharmacoepidemiology </option>
<option value="pharmacy"> Pharmacy </option>
<option value="philosophies"> Philosophies </option>
<option value="photochem"> Photochem </option>
<option value="photonics"> Photonics </option>
<option value="phycology"> Phycology </option>
<option value="physchem"> Physchem </option>
<option value="psf"> Physical Sciences Forum </option>
<option value="physics"> Physics </option>
<option value="physiologia"> Physiologia </option>
<option value="plants"> Plants </option>
<option value="plasma"> Plasma </option>
<option value="platforms"> Platforms </option>
<option value="pollutants"> Pollutants </option>
<option value="polymers" selected="selected"> Polymers </option>
<option value="polysaccharides"> Polysaccharides </option>
<option value="populations"> Populations </option>
<option value="poultry"> Poultry </option>
<option value="powders"> Powders </option>
<option value="proceedings"> Proceedings </option>
<option value="processes"> Processes </option>
<option value="prosthesis"> Prosthesis </option>
<option value="proteomes"> Proteomes </option>
<option value="psychiatryint"> Psychiatry International </option>
<option value="psychoactives"> Psychoactives </option>
<option value="psycholint"> Psychology International </option>
<option value="publications"> Publications </option>
<option value="qubs"> Quantum Beam Science (QuBS) </option>
<option value="quantumrep"> Quantum Reports </option>
<option value="quaternary"> Quaternary </option>
<option value="radiation"> Radiation </option>
<option value="reactions"> Reactions </option>
<option value="realestate"> Real Estate </option>
<option value="receptors"> Receptors </option>
<option value="recycling"> Recycling </option>
<option value="rsee"> Regional Science and Environmental Economics (RSEE) </option>
<option value="religions"> Religions </option>
<option value="remotesensing"> Remote Sensing </option>
<option value="reports"> Reports </option>
<option value="reprodmed"> Reproductive Medicine (Reprod. Med.) </option>
<option value="resources"> Resources </option>
<option value="rheumato"> Rheumato </option>
<option value="risks"> Risks </option>
<option value="robotics"> Robotics </option>
<option value="ruminants"> Ruminants </option>
<option value="safety"> Safety </option>
<option value="sci"> Sci </option>
<option value="scipharm"> Scientia Pharmaceutica (Sci. Pharm.) </option>
<option value="sclerosis"> Sclerosis </option>
<option value="seeds"> Seeds </option>
<option value="sensors"> Sensors </option>
<option value="separations"> Separations </option>
<option value="sexes"> Sexes </option>
<option value="signals"> Signals </option>
<option value="sinusitis"> Sinusitis </option>
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<option value="1202">Antibacterial Polymers: From Natural Inspiration to Practical Applications</option>
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<option value="8064">From Amphiphilic to Polyphilic Polymers</option>
<option value="5082">Functional Polymers for Medical Applications</option>
<option value="16215">Functional Polyurethanes – In Memory of Prof. József Karger-Kocsis</option>
<option value="7493">Functionally Responsive Polymeric Materials</option>
<option value="3293">Graphene-based Polymer Composites</option>
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<option value="8929">High Performance Polymers</option>
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<option value="17335">Hydrogels and Gels for Biomedical and Sustainable Applications</option>
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<option value="11241">Hydrophilic Polymers</option>
<option value="3291">Interpenetrating Polymer Network</option>
<option value="8152">Knotted and Catenated Polymers</option>
<option value="11767">Liquid Crystalline Polymers</option>
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<option value="7508">Metal Complexes-Mediated Catalysis in Polymerization</option>
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<option value="15460">Microporous Organic Polymers: Synthesis, Characterization and Applications</option>
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<option value="30143">New Trends in Polymer Science: Health of the Planet, Health of the People</option>
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<option value="115982">Polymer Research in INSTM—National Interuniversity Consortium of Materials Science and Technology—Never Stops</option>
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<option value="1647">Polymer Thin Films and Membranes 2013</option>
<option value="4755">Polymer Thin Films and Membranes 2015</option>
<option value="15452">Polymer-CNT Nanocomposites</option>
<option value="1118">Polymer-Inorganic Hybrids and Their Applications</option>
<option value="3278">Polymer-Inorganic Hybrids and Their Applications 2014</option>
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<option value="7064">Polymers and Nanogels for Gene Therapy</option>
<option value="3104">Polymers and Polymeric Nanoparticles for Therapy and Imaging</option>
<option value="4825">Polymers Applied in Tissue Engineering</option>
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<option value="11781">Polymers for Modern and Advanced Engineering Applications</option>
<option value="947">Polymers for Optical Applications</option>
<option value="958">Polymers for Oro-Dental and Cranio- Maxillo-Facial Applications</option>
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<option value="10734">Polymers for Therapy and Diagnostics</option>
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<option value="11637">Polymers: Design, Function and Application</option>
<option value="3270">Porous Polymers</option>
<option value="12183">Precision Polymer Synthesis</option>
<option value="10983">RAFT Living Radical Polymerization and Self-Assembly</option>
<option value="6032">Recent Advances in Flame Retardancy of Textile Related Products</option>
<option value="217498">Recent Advances in Flame-Retardant Polymeric Materials</option>
<option value="211127">Research Progress on Polymer and Admixture Modified Concrete Composites in Civil Engineering</option>
<option value="6141">Responsive Polymers for Drug Delivery, Imaging and Theranostic Functions</option>
<option value="1954">Ring-Opening Polymerization</option>
<option value="79083">RubberCon 2021: Innovative Pioneers for Smart and Sustainable Rubber Technology</option>
<option value="10397">Selected Papers from "ECIS 2017"</option>
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<option value="13359">Selected Papers from 2018 SRPS & 2018 GISAS: Structure-Mediated Functional Polymers</option>
<option value="5566">Selected Papers from ASEPFPM2015</option>
<option value="13202">Selected Papers from ECIS 2018</option>
<option value="24817">Selected papers from the 102nd Canadian Chemistry Conference and Exhibition, June 3-7, Quebec City, Canada</option>
<option value="4829">Selected Papers from The 7th International Conference on FRP Composites in Civil Engineering (CICE 2014)</option>
<option value="5558">Selected Papers from the Symposium “Polymer Gels as Advanced Soft Materials” at PacifiChem2015</option>
<option value="41472">Selected Papers from IMETI 2021</option>
<option value="2550">Semiconducting Polymers for Organic Electronic Devices</option>
<option value="9335">Shape Memory Polymers</option>
<option value="3178">Shape-Memory Polymers</option>
<option value="11452">Siloxane-Based Polymers</option>
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<option value="12241">Smart and Functional Elastomers, Hydrogels, and Ionogels</option>
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<option value="142647">State-of-the-Art Polymer Science and Technology in Chile (2022,2023)</option>
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<option value="55981">State-of-the-Art Polymer Science and Technology in Greece</option>
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<option value="53260">State-of-the-Art Polymer Science and Technology in Taiwan (2021,2022)</option>
<option value="74751">State-of-the-Art Polymer Science and Technology in the UK (2021,2022)</option>
<option value="152292">State-of-the-Art Polymer Science and Technology in the USA (2022,2023)</option>
<option value="73271">State-of-the-Art Polymer Science and Technology in Uruguay (2021,2022)</option>
<option value="10096">Stimuli Responsive Polymers</option>
<option value="1454">Stimuli-Responsive Polymers and Colloids</option>
<option value="2110">Supramolecular Chemistry and Self-Assembly 2013</option>
<option value="10948">Surface Modification and Functional Coatings for Polymers</option>
<option value="14495">Synthesis and Application of Conjugated Polymers</option>
<option value="8423">Tailored Polymer Synthesis by Advanced Polymerization Techniques</option>
<option value="11850">Textile and Textile-Based Materials</option>
<option value="94473">Theory of Polymers at Interfaces II</option>
<option value="10569">Thermosets</option>
<option value="6281">Three-Dimensional Structures: Fabrication and Application</option>
<option value="1193">Water-Soluble Polymers</option>
<option value="2054">Waterborne Polymers</option>
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<option value="68158">Women in Polymer Science and Technology: Biopolymers</option>
<option value="78713">Women in Polymer Science and Technology: Polymeric Carbon Nanomaterials in Energy and Environmental Remediation</option>
<option value="70677">Women in Polymer Science and Technology: Polymers Recycling</option>
<option value="69135">Women in Polymer Science and Technology: Sustainable Polymers</option>
<option value="6913">Young Talents in Polymer Science</option>
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<div id="advanced-search-template" class="row advanced-search-row">
<div class="large-2 medium-2 small-12 columns show-for-medium-up"> </div>
<div class="large-2 medium-2 small-3 columns connector-div">
<div class="search-input-label"><span class="show-for-medium-up">Logical Operator</span><span class="show-for-small">Operator</span></div>
<select class="connector">
<option value="and">AND</option>
<option value="or">OR</option>
</select>
</div>
<div class="large-3 medium-3 small-6 columns search-text-div">
<div class="search-input-label">Search Text</div>
<input type="text" class="search-text" placeholder="Search text">
</div>
<div class="large-2 medium-2 small-6 large-offset-0 medium-offset-0 small-offset-3 columns search-field-div">
<div class="search-input-label">Search Type</div>
<select class="search-field">
<option value="all">All fields</option>
<option value="title">Title</option>
<option value="abstract">Abstract</option>
<option value="keywords">Keywords</option>
<option value="authors">Authors</option>
<option value="affiliations">Affiliations</option>
<option value="doi">Doi</option>
<option value="full_text">Full Text</option>
<option value="references">References</option>
</select>
</div>
<div class="large-1 medium-1 small-3 columns">
<div class="search-input-label"> </div>
<div class="search-action-div">
<div class="search-plus">
<i class="material-icons">add_circle_outline</i>
</div>
</div>
<div class="search-action-div">
<div class="search-minus">
<i class="material-icons">remove_circle_outline</i>
</div>
</div>
</div>
<div class="large-1 medium-1 small-6 large-offset-0 medium-offset-0 small-offset-3 end columns">
<div class="search-input-label"> </div>
<input class="advanced-search-button button button--dark search-submit" type="submit" value="Search">
</div>
<div class="large-1 medium-1 small-6 end columns show-for-medium-up"></div>
</div>
</div>
</form>
POST /journal/polymers
<form method="post" action="/journal/polymers" id="qckvi" onsubmit="return !$('#journal-browser-go').hasClass('button--grey');">
<div style="margin-bottom: 10px;" class="UI_JournalBrowser_Volume">
<select id="journal-browser-volume" name="volume" style="width: 100%; margin-bottom: 0px; display: none;" class="chosen-select">
<option value="" data-id="0">volume</option>
<option onclick="$('#journal-browser-namesystem').val($(this).data('namesystem'));" data-namesystem="polymers" value="16"> 16 </option>
<option onclick="$('#journal-browser-namesystem').val($(this).data('namesystem'));" data-namesystem="polymers" value="15"> 15 </option>
<option onclick="$('#journal-browser-namesystem').val($(this).data('namesystem'));" data-namesystem="polymers" value="14"> 14 </option>
<option onclick="$('#journal-browser-namesystem').val($(this).data('namesystem'));" data-namesystem="polymers" value="13"> 13 </option>
<option onclick="$('#journal-browser-namesystem').val($(this).data('namesystem'));" data-namesystem="polymers" value="12"> 12 </option>
<option onclick="$('#journal-browser-namesystem').val($(this).data('namesystem'));" data-namesystem="polymers" value="11"> 11 </option>
<option onclick="$('#journal-browser-namesystem').val($(this).data('namesystem'));" data-namesystem="polymers" value="10"> 10 </option>
<option onclick="$('#journal-browser-namesystem').val($(this).data('namesystem'));" data-namesystem="polymers" value="9"> 9 </option>
<option onclick="$('#journal-browser-namesystem').val($(this).data('namesystem'));" data-namesystem="polymers" value="8"> 8 </option>
<option onclick="$('#journal-browser-namesystem').val($(this).data('namesystem'));" data-namesystem="polymers" value="7"> 7 </option>
<option onclick="$('#journal-browser-namesystem').val($(this).data('namesystem'));" data-namesystem="polymers" value="6"> 6 </option>
<option onclick="$('#journal-browser-namesystem').val($(this).data('namesystem'));" data-namesystem="polymers" value="5"> 5 </option>
<option onclick="$('#journal-browser-namesystem').val($(this).data('namesystem'));" data-namesystem="polymers" value="4"> 4 </option>
<option onclick="$('#journal-browser-namesystem').val($(this).data('namesystem'));" data-namesystem="polymers" value="3"> 3 </option>
<option onclick="$('#journal-browser-namesystem').val($(this).data('namesystem'));" data-namesystem="polymers" value="2"> 2 </option>
<option onclick="$('#journal-browser-namesystem').val($(this).data('namesystem'));" data-namesystem="polymers" value="1"> 1 </option>
</select>
<div class="chosen-container chosen-container-single" title="" id="journal_browser_volume_chosen" style="width: 100%;"><a class="chosen-single">
<span>volume</span>
<div><b></b></div>
</a>
<div class="chosen-drop UI_JournalBrowser_Volume_Options">
<div class="chosen-search">
<input class="chosen-search-input" type="text" autocomplete="off">
</div>
<ul class="chosen-results"></ul>
</div>
</div>
</div>
<div style="margin-bottom: 10px;" class="UI_JournalBrowser_Issue">
<select id="journal-browser-issue" name="issue" style="width: 100%; margin-bottom: 0px; display: none;" class="chosen-select">
<option value="" class="volume-0">issue</option>
<option value="1" class="volume-16" style="display: none;"> 1 </option>
<option value="2" class="volume-16" style="display: none;"> 2 </option>
<option value="3" class="volume-16" style="display: none;"> 3 </option>
<option value="4" class="volume-16" style="display: none;"> 4 </option>
<option value="5" class="volume-16" style="display: none;"> 5 </option>
<option value="6" class="volume-16" style="display: none;"> 6 </option>
<option value="7" class="volume-16" style="display: none;"> 7 </option>
<option value="8" class="volume-16" style="display: none;"> 8 </option>
<option value="9" class="volume-16" style="display: none;"> 9 </option>
<option value="10" class="volume-16" style="display: none;"> 10 </option>
<option value="11" class="volume-16" style="display: none;"> 11 </option>
<option value="12" class="volume-16" style="display: none;"> 12 </option>
<option value="13" class="volume-16" style="display: none;"> 13 </option>
<option value="14" class="volume-16" style="display: none;"> 14 </option>
<option value="15" class="volume-16" style="display: none;"> 15 </option>
<option value="16" class="volume-16" style="display: none;"> 16 </option>
<option value="17" class="volume-16" style="display: none;"> 17 </option>
<option value="18" class="volume-16" style="display: none;"> 18 </option>
<option value="19" class="volume-16" style="display: none;"> 19 </option>
<option value="1" class="volume-15" style="display: none;"> 1 </option>
<option value="2" class="volume-15" style="display: none;"> 2 </option>
<option value="3" class="volume-15" style="display: none;"> 3 </option>
<option value="4" class="volume-15" style="display: none;"> 4 </option>
<option value="5" class="volume-15" style="display: none;"> 5 </option>
<option value="6" class="volume-15" style="display: none;"> 6 </option>
<option value="7" class="volume-15" style="display: none;"> 7 </option>
<option value="8" class="volume-15" style="display: none;"> 8 </option>
<option value="9" class="volume-15" style="display: none;"> 9 </option>
<option value="10" class="volume-15" style="display: none;"> 10 </option>
<option value="11" class="volume-15" style="display: none;"> 11 </option>
<option value="12" class="volume-15" style="display: none;"> 12 </option>
<option value="13" class="volume-15" style="display: none;"> 13 </option>
<option value="14" class="volume-15" style="display: none;"> 14 </option>
<option value="15" class="volume-15" style="display: none;"> 15 </option>
<option value="16" class="volume-15" style="display: none;"> 16 </option>
<option value="17" class="volume-15" style="display: none;"> 17 </option>
<option value="18" class="volume-15" style="display: none;"> 18 </option>
<option value="19" class="volume-15" style="display: none;"> 19 </option>
<option value="20" class="volume-15" style="display: none;"> 20 </option>
<option value="21" class="volume-15" style="display: none;"> 21 </option>
<option value="22" class="volume-15" style="display: none;"> 22 </option>
<option value="23" class="volume-15" style="display: none;"> 23 </option>
<option value="24" class="volume-15" style="display: none;"> 24 </option>
<option value="1" class="volume-14" style="display: none;"> 1 </option>
<option value="2" class="volume-14" style="display: none;"> 2 </option>
<option value="3" class="volume-14" style="display: none;"> 3 </option>
<option value="4" class="volume-14" style="display: none;"> 4 </option>
<option value="5" class="volume-14" style="display: none;"> 5 </option>
<option value="6" class="volume-14" style="display: none;"> 6 </option>
<option value="7" class="volume-14" style="display: none;"> 7 </option>
<option value="8" class="volume-14" style="display: none;"> 8 </option>
<option value="9" class="volume-14" style="display: none;"> 9 </option>
<option value="10" class="volume-14" style="display: none;"> 10 </option>
<option value="11" class="volume-14" style="display: none;"> 11 </option>
<option value="12" class="volume-14" style="display: none;"> 12 </option>
<option value="13" class="volume-14" style="display: none;"> 13 </option>
<option value="14" class="volume-14" style="display: none;"> 14 </option>
<option value="15" class="volume-14" style="display: none;"> 15 </option>
<option value="16" class="volume-14" style="display: none;"> 16 </option>
<option value="17" class="volume-14" style="display: none;"> 17 </option>
<option value="18" class="volume-14" style="display: none;"> 18 </option>
<option value="19" class="volume-14" style="display: none;"> 19 </option>
<option value="20" class="volume-14" style="display: none;"> 20 </option>
<option value="21" class="volume-14" style="display: none;"> 21 </option>
<option value="22" class="volume-14" style="display: none;"> 22 </option>
<option value="23" class="volume-14" style="display: none;"> 23 </option>
<option value="24" class="volume-14" style="display: none;"> 24 </option>
<option value="1" class="volume-13" style="display: none;"> 1 </option>
<option value="2" class="volume-13" style="display: none;"> 2 </option>
<option value="3" class="volume-13" style="display: none;"> 3 </option>
<option value="4" class="volume-13" style="display: none;"> 4 </option>
<option value="5" class="volume-13" style="display: none;"> 5 </option>
<option value="6" class="volume-13" style="display: none;"> 6 </option>
<option value="7" class="volume-13" style="display: none;"> 7 </option>
<option value="8" class="volume-13" style="display: none;"> 8 </option>
<option value="9" class="volume-13" style="display: none;"> 9 </option>
<option value="10" class="volume-13" style="display: none;"> 10 </option>
<option value="11" class="volume-13" style="display: none;"> 11 </option>
<option value="12" class="volume-13" style="display: none;"> 12 </option>
<option value="13" class="volume-13" style="display: none;"> 13 </option>
<option value="14" class="volume-13" style="display: none;"> 14 </option>
<option value="15" class="volume-13" style="display: none;"> 15 </option>
<option value="16" class="volume-13" style="display: none;"> 16 </option>
<option value="17" class="volume-13" style="display: none;"> 17 </option>
<option value="18" class="volume-13" style="display: none;"> 18 </option>
<option value="19" class="volume-13" style="display: none;"> 19 </option>
<option value="20" class="volume-13" style="display: none;"> 20 </option>
<option value="21" class="volume-13" style="display: none;"> 21 </option>
<option value="22" class="volume-13" style="display: none;"> 22 </option>
<option value="23" class="volume-13" style="display: none;"> 23 </option>
<option value="24" class="volume-13" style="display: none;"> 24 </option>
<option value="1" class="volume-12" style="display: none;"> 1 </option>
<option value="2" class="volume-12" style="display: none;"> 2 </option>
<option value="3" class="volume-12" style="display: none;"> 3 </option>
<option value="4" class="volume-12" style="display: none;"> 4 </option>
<option value="5" class="volume-12" style="display: none;"> 5 </option>
<option value="6" class="volume-12" style="display: none;"> 6 </option>
<option value="7" class="volume-12" style="display: none;"> 7 </option>
<option value="8" class="volume-12" style="display: none;"> 8 </option>
<option value="9" class="volume-12" style="display: none;"> 9 </option>
<option value="10" class="volume-12" style="display: none;"> 10 </option>
<option value="11" class="volume-12" style="display: none;"> 11 </option>
<option value="12" class="volume-12" style="display: none;"> 12 </option>
<option value="1" class="volume-11" style="display: none;"> 1 </option>
<option value="2" class="volume-11" style="display: none;"> 2 </option>
<option value="3" class="volume-11" style="display: none;"> 3 </option>
<option value="4" class="volume-11" style="display: none;"> 4 </option>
<option value="5" class="volume-11" style="display: none;"> 5 </option>
<option value="6" class="volume-11" style="display: none;"> 6 </option>
<option value="7" class="volume-11" style="display: none;"> 7 </option>
<option value="8" class="volume-11" style="display: none;"> 8 </option>
<option value="9" class="volume-11" style="display: none;"> 9 </option>
<option value="10" class="volume-11" style="display: none;"> 10 </option>
<option value="11" class="volume-11" style="display: none;"> 11 </option>
<option value="12" class="volume-11" style="display: none;"> 12 </option>
<option value="1" class="volume-10" style="display: none;"> 1 </option>
<option value="2" class="volume-10" style="display: none;"> 2 </option>
<option value="3" class="volume-10" style="display: none;"> 3 </option>
<option value="4" class="volume-10" style="display: none;"> 4 </option>
<option value="5" class="volume-10" style="display: none;"> 5 </option>
<option value="6" class="volume-10" style="display: none;"> 6 </option>
<option value="7" class="volume-10" style="display: none;"> 7 </option>
<option value="8" class="volume-10" style="display: none;"> 8 </option>
<option value="9" class="volume-10" style="display: none;"> 9 </option>
<option value="10" class="volume-10" style="display: none;"> 10 </option>
<option value="11" class="volume-10" style="display: none;"> 11 </option>
<option value="12" class="volume-10" style="display: none;"> 12 </option>
<option value="1" class="volume-9" style="display: none;"> 1 </option>
<option value="2" class="volume-9" style="display: none;"> 2 </option>
<option value="3" class="volume-9" style="display: none;"> 3 </option>
<option value="4" class="volume-9" style="display: none;"> 4 </option>
<option value="5" class="volume-9" style="display: none;"> 5 </option>
<option value="6" class="volume-9" style="display: none;"> 6 </option>
<option value="7" class="volume-9" style="display: none;"> 7 </option>
<option value="8" class="volume-9" style="display: none;"> 8 </option>
<option value="9" class="volume-9" style="display: none;"> 9 </option>
<option value="10" class="volume-9" style="display: none;"> 10 </option>
<option value="11" class="volume-9" style="display: none;"> 11 </option>
<option value="12" class="volume-9" style="display: none;"> 12 </option>
<option value="1" class="volume-8" style="display: none;"> 1 </option>
<option value="2" class="volume-8" style="display: none;"> 2 </option>
<option value="3" class="volume-8" style="display: none;"> 3 </option>
<option value="4" class="volume-8" style="display: none;"> 4 </option>
<option value="5" class="volume-8" style="display: none;"> 5 </option>
<option value="6" class="volume-8" style="display: none;"> 6 </option>
<option value="7" class="volume-8" style="display: none;"> 7 </option>
<option value="8" class="volume-8" style="display: none;"> 8 </option>
<option value="9" class="volume-8" style="display: none;"> 9 </option>
<option value="10" class="volume-8" style="display: none;"> 10 </option>
<option value="11" class="volume-8" style="display: none;"> 11 </option>
<option value="12" class="volume-8" style="display: none;"> 12 </option>
<option value="1" class="volume-7" style="display: none;"> 1 </option>
<option value="2" class="volume-7" style="display: none;"> 2 </option>
<option value="3" class="volume-7" style="display: none;"> 3 </option>
<option value="4" class="volume-7" style="display: none;"> 4 </option>
<option value="5" class="volume-7" style="display: none;"> 5 </option>
<option value="6" class="volume-7" style="display: none;"> 6 </option>
<option value="7" class="volume-7" style="display: none;"> 7 </option>
<option value="8" class="volume-7" style="display: none;"> 8 </option>
<option value="9" class="volume-7" style="display: none;"> 9 </option>
<option value="10" class="volume-7" style="display: none;"> 10 </option>
<option value="11" class="volume-7" style="display: none;"> 11 </option>
<option value="12" class="volume-7" style="display: none;"> 12 </option>
<option value="1" class="volume-6" style="display: none;"> 1 </option>
<option value="2" class="volume-6" style="display: none;"> 2 </option>
<option value="3" class="volume-6" style="display: none;"> 3 </option>
<option value="4" class="volume-6" style="display: none;"> 4 </option>
<option value="5" class="volume-6" style="display: none;"> 5 </option>
<option value="6" class="volume-6" style="display: none;"> 6 </option>
<option value="7" class="volume-6" style="display: none;"> 7 </option>
<option value="8" class="volume-6" style="display: none;"> 8 </option>
<option value="9" class="volume-6" style="display: none;"> 9 </option>
<option value="10" class="volume-6" style="display: none;"> 10 </option>
<option value="11" class="volume-6" style="display: none;"> 11 </option>
<option value="12" class="volume-6" style="display: none;"> 12 </option>
<option value="1" class="volume-5" style="display: none;"> 1 </option>
<option value="2" class="volume-5" style="display: none;"> 2 </option>
<option value="3" class="volume-5" style="display: none;"> 3 </option>
<option value="4" class="volume-5" style="display: none;"> 4 </option>
<option value="1" class="volume-4" style="display: none;"> 1 </option>
<option value="2" class="volume-4" style="display: none;"> 2 </option>
<option value="3" class="volume-4" style="display: none;"> 3 </option>
<option value="4" class="volume-4" style="display: none;"> 4 </option>
<option value="1" class="volume-3" style="display: none;"> 1 </option>
<option value="2" class="volume-3" style="display: none;"> 2 </option>
<option value="3" class="volume-3" style="display: none;"> 3 </option>
<option value="4" class="volume-3" style="display: none;"> 4 </option>
<option value="1" class="volume-2" style="display: none;"> 1 </option>
<option value="2" class="volume-2" style="display: none;"> 2 </option>
<option value="3" class="volume-2" style="display: none;"> 3 </option>
<option value="4" class="volume-2" style="display: none;"> 4 </option>
<option value="1" class="volume-1" style="display: none;"> 1 </option>
</select>
<div class="chosen-container chosen-container-single" title="" id="journal_browser_issue_chosen" style="width: 100%;"><a class="chosen-single">
<span>issue</span>
<div><b></b></div>
</a>
<div class="chosen-drop UI_JournalBrowser_Issue_Options">
<div class="chosen-search">
<input class="chosen-search-input" type="text" autocomplete="off">
</div>
<ul class="chosen-results"></ul>
</div>
</div>
</div>
<input type="hidden" name="_token" value="66ABd_IHCF46B1ays_Tkqb9LuusUwhv_tcYmKdPcgCs">
<input type="hidden" id="journal-browser-namesystem" name="namesystem" value="polymers">
<input type="hidden" name="getIssueByVI" value="1">
<input type="submit" id="journal-browser-go" value="Go" style="" class="button button--grey button--full-width UI_JournalBrowser_GoButton">
</form>
POST /subscribe
<form method="post" action="/subscribe" id="subscribeForm" style="margin:0; padding:0;" onsubmit="return false;">
<div style="margin-bottom: 5px;">Add your e-mail address to receive forthcoming issues of this journal:</div>
<input name="email" type="email" placeholder="Enter Your E-Mail Address..." required="required">
<input name="journals[]" type="hidden" value="polymers">
<input type="hidden" name="_token" value="xu1xGh1wnaqBKKIu6ykH4t9ik65SZ_DvQ60w3126OHI">
<input id="Email-Subscribe" class="button button--color button--full-width genericCaptcha UA_JournalSubscribeButton" name="email-button" value="Subscribe" type="submit">
</form>
POST /subscribe
<form id="newsletter" method="POST" action="/subscribe">
<p> Subscribe to receive issue release notifications and newsletters from MDPI journals </p>
<select multiple="" id="newsletter-journal" class="foundation-select jqmsLoaded" name="journals[]" style="display: none;">
<option value="acoustics">Acoustics</option>
<option value="amh">Acta Microbiologica Hellenica</option>
<option value="actuators">Actuators</option>
<option value="admsci">Administrative Sciences</option>
<option value="adolescents">Adolescents</option>
<option value="arm">Advances in Respiratory Medicine</option>
<option value="aerobiology">Aerobiology</option>
<option value="aerospace">Aerospace</option>
<option value="agriculture">Agriculture</option>
<option value="agriengineering">AgriEngineering</option>
<option value="agrochemicals">Agrochemicals</option>
<option value="agronomy">Agronomy</option>
<option value="ai">AI</option>
<option value="air">Air</option>
<option value="algorithms">Algorithms</option>
<option value="allergies">Allergies</option>
<option value="alloys">Alloys</option>
<option value="analytica">Analytica</option>
<option value="analytics">Analytics</option>
<option value="anatomia">Anatomia</option>
<option value="anesthres">Anesthesia Research</option>
<option value="animals">Animals</option>
<option value="antibiotics">Antibiotics</option>
<option value="antibodies">Antibodies</option>
<option value="antioxidants">Antioxidants</option>
<option value="applbiosci">Applied Biosciences</option>
<option value="applmech">Applied Mechanics</option>
<option value="applmicrobiol">Applied Microbiology</option>
<option value="applnano">Applied Nano</option>
<option value="applsci">Applied Sciences</option>
<option value="asi">Applied System Innovation</option>
<option value="appliedchem">AppliedChem</option>
<option value="appliedmath">AppliedMath</option>
<option value="aquacj">Aquaculture Journal</option>
<option value="architecture">Architecture</option>
<option value="arthropoda">Arthropoda</option>
<option value="arts">Arts</option>
<option value="astronomy">Astronomy</option>
<option value="atmosphere">Atmosphere</option>
<option value="atoms">Atoms</option>
<option value="audiolres">Audiology Research</option>
<option value="automation">Automation</option>
<option value="axioms">Axioms</option>
<option value="bacteria">Bacteria</option>
<option value="batteries">Batteries</option>
<option value="behavsci">Behavioral Sciences</option>
<option value="beverages">Beverages</option>
<option value="BDCC">Big Data and Cognitive Computing</option>
<option value="biochem">BioChem</option>
<option value="bioengineering">Bioengineering</option>
<option value="biologics">Biologics</option>
<option value="biology">Biology</option>
<option value="blsf">Biology and Life Sciences Forum</option>
<option value="biomass">Biomass</option>
<option value="biomechanics">Biomechanics</option>
<option value="biomed">BioMed</option>
<option value="biomedicines">Biomedicines</option>
<option value="biomedinformatics">BioMedInformatics</option>
<option value="biomimetics">Biomimetics</option>
<option value="biomolecules">Biomolecules</option>
<option value="biophysica">Biophysica</option>
<option value="biosensors">Biosensors</option>
<option value="biotech">BioTech</option>
<option value="birds">Birds</option>
<option value="blockchains">Blockchains</option>
<option value="brainsci">Brain Sciences</option>
<option value="buildings">Buildings</option>
<option value="businesses">Businesses</option>
<option value="carbon">C</option>
<option value="cancers">Cancers</option>
<option value="cardiogenetics">Cardiogenetics</option>
<option value="catalysts">Catalysts</option>
<option value="cells">Cells</option>
<option value="ceramics">Ceramics</option>
<option value="challenges">Challenges</option>
<option value="ChemEngineering">ChemEngineering</option>
<option value="chemistry">Chemistry</option>
<option value="chemproc">Chemistry Proceedings</option>
<option value="chemosensors">Chemosensors</option>
<option value="children">Children</option>
<option value="chips">Chips</option>
<option value="civileng">CivilEng</option>
<option value="cleantechnol">Clean Technologies</option>
<option value="climate">Climate</option>
<option value="ctn">Clinical and Translational Neuroscience</option>
<option value="clinpract">Clinics and Practice</option>
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<option value="computation">Computation</option>
<option value="csmf">Computer Sciences & Mathematics Forum</option>
<option value="computers">Computers</option>
<option value="condensedmatter">Condensed Matter</option>
<option value="conservation">Conservation</option>
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<option value="cosmetics">Cosmetics</option>
<option value="covid">COVID</option>
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<option value="cryptography">Cryptography</option>
<option value="crystals">Crystals</option>
<option value="cimb">Current Issues in Molecular Biology</option>
<option value="curroncol">Current Oncology</option>
<option value="dairy">Dairy</option>
<option value="data">Data</option>
<option value="dentistry">Dentistry Journal</option>
<option value="dermato">Dermato</option>
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<option value="digital">Digital</option>
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<option value="diversity">Diversity</option>
<option value="dna">DNA</option>
<option value="drones">Drones</option>
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<option value="encyclopedia">Encyclopedia</option>
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<option value="eng">Eng</option>
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<option value="environsciproc">Environmental Sciences Proceedings</option>
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<option value="epidemiologia">Epidemiologia</option>
<option value="epigenomes">Epigenomes</option>
<option value="ebj">European Burn Journal</option>
<option value="ejihpe">European Journal of Investigation in Health, Psychology and Education</option>
<option value="fermentation">Fermentation</option>
<option value="fibers">Fibers</option>
<option value="fintech">FinTech</option>
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<option value="informatics">Informatics</option>
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<option value="instruments">Instruments</option>
<option value="iic">Intelligent Infrastructure and Construction</option>
<option value="ijerph">International Journal of Environmental Research and Public Health</option>
<option value="ijfs">International Journal of Financial Studies</option>
<option value="ijms">International Journal of Molecular Sciences</option>
<option value="IJNS">International Journal of Neonatal Screening</option>
<option value="ijpb">International Journal of Plant Biology</option>
<option value="ijt">International Journal of Topology</option>
<option value="ijtm">International Journal of Translational Medicine</option>
<option value="ijtpp">International Journal of Turbomachinery, Propulsion and Power</option>
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<option value="inventions">Inventions</option>
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<option value="ijgi">ISPRS International Journal of Geo-Information</option>
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<option value="jcdd">Journal of Cardiovascular Development and Disease</option>
<option value="jcto">Journal of Clinical & Translational Ophthalmology</option>
<option value="jcm">Journal of Clinical Medicine</option>
<option value="jcs">Journal of Composites Science</option>
<option value="jcp">Journal of Cybersecurity and Privacy</option>
<option value="jdad">Journal of Dementia and Alzheimer's Disease</option>
<option value="jdb">Journal of Developmental Biology</option>
<option value="jeta">Journal of Experimental and Theoretical Analyses</option>
<option value="jfb">Journal of Functional Biomaterials</option>
<option value="jfmk">Journal of Functional Morphology and Kinesiology</option>
<option value="jof">Journal of Fungi</option>
<option value="jimaging">Journal of Imaging</option>
<option value="jintelligence">Journal of Intelligence</option>
<option value="jlpea">Journal of Low Power Electronics and Applications</option>
<option value="jmmp">Journal of Manufacturing and Materials Processing</option>
<option value="jmse">Journal of Marine Science and Engineering</option>
<option value="jmahp">Journal of Market Access & Health Policy</option>
<option value="jmp">Journal of Molecular Pathology</option>
<option value="jnt">Journal of Nanotheranostics</option>
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<option value="ohbm">Journal of Otorhinolaryngology, Hearing and Balance Medicine</option>
<option value="jpm">Journal of Personalized Medicine</option>
<option value="jpbi">Journal of Pharmaceutical and BioTech Industry</option>
<option value="jor">Journal of Respiration</option>
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<option value="jsan">Journal of Sensor and Actuator Networks</option>
<option value="joma">Journal of the Oman Medical Association</option>
<option value="jtaer">Journal of Theoretical and Applied Electronic Commerce Research</option>
<option value="jvd">Journal of Vascular Diseases</option>
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<option value="mps">Methods and Protocols</option>
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<option value="neurolint">Neurology International</option>
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<option value="parasitologia">Parasitologia</option>
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<option value="proteomes">Proteomes</option>
<option value="psychiatryint">Psychiatry International</option>
<option value="psychoactives">Psychoactives</option>
<option value="psycholint">Psychology International</option>
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<option value="qubs">Quantum Beam Science</option>
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<option value="reactions">Reactions</option>
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<option value="solids">Solids</option>
<option value="spectroscj">Spectroscopy Journal</option>
<option value="sports">Sports</option>
<option value="standards">Standards</option>
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<option value="stresses">Stresses</option>
<option value="surfaces">Surfaces</option>
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<option value="std">Surgical Techniques Development</option>
<option value="sustainability">Sustainability</option>
<option value="suschem">Sustainable Chemistry</option>
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Psychology and Education</label></li>
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Medicine</label></li>
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JOURNAL DESCRIPTION POLYMERS Polymers is an international, peer-reviewed, open access journal of polymer science published semimonthly online by MDPI. Belgian Polymer Group (BPG), European Colloid & Interface Society (ECIS), National Interuniversity Consortium of Materials Science and Technology (INSTM) and North American Thermal Analysis Society (NATAS) are affiliated with Polymers and their members receive a discount on the article processing charges. * Open Access— free for readers, with article processing charges (APC) paid by authors or their institutions. * High Visibility: indexed within Scopus, SCIE (Web of Science), Ei Compendex, PubMed, PMC, FSTA, CAPlus / SciFinder, Inspec, and other databases. * Journal Rank: JCR - Q1 (Polymer Science) / CiteScore - Q1 (General Chemistry ) * Rapid Publication: manuscripts are peer-reviewed and a first decision is provided to authors approximately 14.5 days after submission; acceptance to publication is undertaken in 3.4 days (median values for papers published in this journal in the first half of 2024). * Recognition of Reviewers: reviewers who provide timely, thorough peer-review reports receive vouchers entitling them to a discount on the APC of their next publication in MDPI journals, in appreciation of the work. * Testimonials: See what our authors and editors say about Polymers. Impact Factor: 4.7 (2023); 5-Year Impact Factor: 4.9 (2023) subject Imprint Information get_app Journal Flyer Open Access ISSN: 2073-4360 LATEST ARTICLES attachment Supplementary material: Supplementary File 1 (ZIP, 74564 KiB) 15 pages, 3905 KiB Open AccessArticle Extrusion 3D Printing of Intrinsically Fluorescent Thermoplastic Polyimide: Revealing an Undisclosed Potential by Premkumar Kothavade, Abdullah Kafi, Chaitali Dekiwadia, Viksit Kumar, Santhosh Babu Sukumaran, Kadhiravan Shanmuganathan and Stuart Bateman Polymers 2024, 16(19), 2798; https://doi.org/10.3390/polym16192798 - 2 Oct 2024 Abstract Thermoplastic polyimides (TPIs) are promising lightweight materials for replacing metal components in aerospace, rocketry, and automotive industries. Key TPI attributes include low density, thermal stability, mechanical strength, inherent flame retardancy, and intrinsic fluorescence under UV light. The application of advanced manufacturing techniques, especially [...] Read more. Thermoplastic polyimides (TPIs) are promising lightweight materials for replacing metal components in aerospace, rocketry, and automotive industries. Key TPI attributes include low density, thermal stability, mechanical strength, inherent flame retardancy, and intrinsic fluorescence under UV light. The application of advanced manufacturing techniques, especially 3D printing, could significantly broaden the use of TPIs; however, challenges in melt-processing this class of polymer represent a barrier. This study explored the processability, 3D-printing and hence mechanical, and fluorescence properties of TPI coupons, demonstrating their suitability for advanced 3D-printing applications. Moreover, the study successfully 3D-printed a functional impeller for an overhead stirrer, effectively replacing its metallic counterpart. Defects were shown to be readily detectable under UV light. A thorough analysis of TPI processing examining its rheological, morphological, and thermal properties is presented. Extruded TPI filaments were 3D-printed into test coupons with different infill geometries to examine the effect of tool path on mechanical performance. The fluorescence properties of the 3D-printed TPI coupons were evaluated to highlight their potential to produce intricately shaped thermally stable, fluorescence-based sensors. Full article (This article belongs to the Special Issue Polymer Materials and Design Processes for Additively Manufactured Products) ►▼ Show Figures Figure 1 Figure 1 30 pages, 6280 KiB Open AccessReview Piezoelectric Scaffolds as Smart Materials for Bone Tissue Engineering by Angelika Zaszczyńska, Konrad Zabielski, Arkadiusz Gradys, Tomasz Kowalczyk and Paweł Sajkiewicz Polymers 2024, 16(19), 2797; https://doi.org/10.3390/polym16192797 - 2 Oct 2024 Abstract Bone repair and regeneration require physiological cues, including mechanical, electrical, and biochemical activity. Many biomaterials have been investigated as bioactive scaffolds with excellent electrical properties. Amongst biomaterials, piezoelectric materials (PMs) are gaining attention in biomedicine, power harvesting, biomedical devices, and structural health monitoring. [...] Read more. Bone repair and regeneration require physiological cues, including mechanical, electrical, and biochemical activity. Many biomaterials have been investigated as bioactive scaffolds with excellent electrical properties. Amongst biomaterials, piezoelectric materials (PMs) are gaining attention in biomedicine, power harvesting, biomedical devices, and structural health monitoring. PMs have unique properties, such as the ability to affect physiological movements and deliver electrical stimuli to damaged bone or cells without an external power source. The crucial bone property is its piezoelectricity. Bones can generate electrical charges and potential in response to mechanical stimuli, as they influence bone growth and regeneration. Piezoelectric materials respond to human microenvironment stimuli and are an important factor in bone regeneration and repair. This manuscript is an overview of the fundamentals of the materials generating the piezoelectric effect and their influence on bone repair and regeneration. This paper focuses on the state of the art of piezoelectric materials, such as polymers, ceramics, and composites, and their application in bone tissue engineering. We present important information from the point of view of bone tissue engineering. We highlight promising upcoming approaches and new generations of piezoelectric materials. Full article (This article belongs to the Special Issue Electrospun Nanofibers for Medical and Bio Applications) ►▼ Show Figures Figure 1 Figure 1 19 pages, 2379 KiB Open AccessArticle Spectroscopic and Thermal Characterisation of Interpenetrating Hydrogel Networks (IHNs) Based on Polymethacrylates and Pluronics, and Their Physicochemical Stability under Aqueous Conditions by David S. Jones, Marion Westwood, Shu Li and Gavin P. Andrews Polymers 2024, 16(19), 2796; https://doi.org/10.3390/polym16192796 - 1 Oct 2024 Abstract This study describes the physicochemical characterisation of interpenetrating hydrogel networks (IHNs) composed of either poly(hydroxyethylmethacrylate, p(HEMA)) or poly(methacrylic acid, p(MAA)), and Pluronic block copolymers (grades F127, P123 and L121). IHNs were prepared by mixing the acrylate monomer with Pluronic block copolymers followed by [...] Read more. This study describes the physicochemical characterisation of interpenetrating hydrogel networks (IHNs) composed of either poly(hydroxyethylmethacrylate, p(HEMA)) or poly(methacrylic acid, p(MAA)), and Pluronic block copolymers (grades F127, P123 and L121). IHNs were prepared by mixing the acrylate monomer with Pluronic block copolymers followed by free radical polymerisation. p(HEMA)–Pluronic blends were immiscible, evident from a lack of interaction between the two components (Raman spectroscopy) and the presence of the glass transitions (differential scanning calorimetry, DSC) of the two components. Conversely, IHNs of p(MAA) and each Pluronic were miscible, displaying a single glass transition and secondary bonding between the carbonyl group of p(MAA) and the ether groups in the Pluronic block copolymers (Raman and ATR-FTIR spectroscopy). The effect of storage of the IHNs in Tris buffer on the physical state of each Pluronic and on the loss of Pluronic from the IHNs were studied using DSC and gravimetric analysis, respectively. Pluronic loss from the IHNs was dependent on the grade of Pluronic, time of immersion in Tris buffer, and the nature of the IHN (p(HEMA) or p(MAA)). At equilibrium, the loss was greater from p(HEMA) than from p(MAA) IHNs, whereas increasing ratio of poly(propylene oxide) to poly(ethylene oxide) decreased Pluronic loss. The retention of each Pluronic grade was shown to be primarily due to its micellization; however, hydrogen bonding between Pluronic and p(MAA) (but not p(HEMA)) IHNs contributed to their retention. Full article (This article belongs to the Special Issue Advances and Applications of Block Copolymers II) ►▼ Show Figures Figure 1 Figure 1 32 pages, 2053 KiB Open AccessReview Effects of Post-Processing Parameters on 3D-Printed Dental Appliances: A Review by Mana Hassanpour, Poom Narongdej, Nicolas Alterman, Sara Moghtadernejad and Ehsan Barjasteh Polymers 2024, 16(19), 2795; https://doi.org/10.3390/polym16192795 - 1 Oct 2024 Abstract In recent years, additive manufacturing (AM) has been recognized as a transformative force in the dental industry, with the ability to address escalating demand, expedite production timelines, and reduce labor-intensive processes. Despite the proliferation of three-dimensional printing technologies in dentistry, the absence of [...] Read more. In recent years, additive manufacturing (AM) has been recognized as a transformative force in the dental industry, with the ability to address escalating demand, expedite production timelines, and reduce labor-intensive processes. Despite the proliferation of three-dimensional printing technologies in dentistry, the absence of well-established post-processing protocols has posed formidable challenges. This comprehensive review paper underscores the critical importance of precision in post-processing techniques for ensuring the acquisition of vital properties, encompassing mechanical strength, biocompatibility, dimensional accuracy, durability, stability, and aesthetic refinement in 3D-printed dental devices. Given that digital light processing (DLP) is the predominant 3D printing technology in dentistry, the main post-processing techniques and effects discussed in this review primarily apply to DLP printing. The four sequential stages of post-processing support removal, washing, secondary polymerization, and surface treatments are systematically navigated, with each phase requiring meticulous evaluation and parameter determination to attain optimal outcomes. From the careful selection of support removal tools to the consideration of solvent choice, washing methodology, and post-curing parameters, this review provides a comprehensive guide for practitioners and researchers. Additionally, the customization of post-processing approaches to suit the distinct characteristics of different resin materials is highlighted. A comprehensive understanding of post-processing techniques is offered, setting the stage for informed decision-making and guiding future research endeavors in the realm of dental additive manufacturing. Full article (This article belongs to the Section Polymer Processing and Engineering) ►▼ Show Figures Figure 1 Figure 1 12 pages, 6174 KiB Open AccessArticle Improving Water Resistance and Mechanical Properties of Crosslinked Waterborne Polyurethane Using Glycidyl Carbamate by Yong Rok Kwon, Jun Ho Park, Hae Chan Kim, Seok Kyu Moon and Dong Hyun Kim Polymers 2024, 16(19), 2794; https://doi.org/10.3390/polym16192794 - 1 Oct 2024 Abstract Waterborne polyurethane (WPU) often suffers from poor water resistance and mechanical properties due to hydrophilic emulsifiers. To address these issues, this study introduces glycidyl carbamate (GC) as a crosslinker to improve WPU performance. Three types of GC were synthesized using aliphatic, cycloaliphatic, and [...] Read more. Waterborne polyurethane (WPU) often suffers from poor water resistance and mechanical properties due to hydrophilic emulsifiers. To address these issues, this study introduces glycidyl carbamate (GC) as a crosslinker to improve WPU performance. Three types of GC were synthesized using aliphatic, cycloaliphatic, and aromatic isocyanates, respectively. The crosslinked network was established through a reaction between the epoxide group of GC and the carboxylic acid and amine groups of WPU. Among these, the WPU film utilizing aromatic isocyanate-based GC exhibited the highest crosslink density, modulus, hardness, and water resistance, due to the rigidity of the aromatic molecular structure. However, the film displayed excessive brittleness, resulting in reduced tensile strength, along with yellowing typically associated with aromatic compounds. The WPU crosslinked with cycloaliphatic GC demonstrated the next best mechanical properties and water resistance, with a 2.7-fold increase in tensile strength, a 1.5-fold increase in hardness, and a 66% reduction in the water swelling ratio compared to neat WPU. This study presents a novel and effective strategy to enhance the water resistance and mechanical properties of WPU films, making them suitable for advanced coating applications. Full article (This article belongs to the Special Issue Advances in Functional Polyurethane and Composites) ►▼ Show Figures Figure 1 Figure 1 15 pages, 11438 KiB Open AccessArticle Investigation on Erosion Resistance in Polyester–Jute Composites with Red Mud Particulate: Impact of Fibre Treatment and Particulate Addition by Sundarakannan Rajendran, Vigneshwaran Shanmugam, Geetha Palani, Uthayakumar Marimuthu, Arumugaprabu Veerasimman, Kinga Korniejenko, Inna Oliinyk, Herri Trilaksana and Vickram Sundaram Polymers 2024, 16(19), 2793; https://doi.org/10.3390/polym16192793 - 1 Oct 2024 Abstract This research investigates the manufacturing and characterisation of polyester-based composites reinforced with jute fibres and red mud particulates. The motivation stems from the need for sustainable, high-performance materials for applications in industries, like aerospace and automotive, where resistance to erosion is critical. Jute, [...] Read more. This research investigates the manufacturing and characterisation of polyester-based composites reinforced with jute fibres and red mud particulates. The motivation stems from the need for sustainable, high-performance materials for applications in industries, like aerospace and automotive, where resistance to erosion is critical. Jute, a renewable fibre, combined with red mud, an industrial byproduct, offers an eco-friendly alternative to conventional composites. The composites were fabricated using compression moulding with varying red mud contents (10, 20, and 30 wt.%) and a fixed 40 wt.% of jute fibre. Fibre treatments included sodium hydroxide (NaOH) and silane treatments to improve bonding and performance. Erosion tests were performed using an air-jet erosion tester, examining the effects of the red mud content, fibre treatment, and impact angles. Scanning Electron Microscope (SEM) analysis provided insights into the erosion mechanisms. A distinctive reduction in erosion rates at higher impact angles (30°–60°) was observed, attributed to the semi-ductile nature of the composites. The addition of red mud enhanced erosion resistance, although an excess of 30 wt.% reduced resistance due to poor surface bonding. Silane-treated composites showed the lowest erosion rates. This study provides new insights into the interplay among material composition, fibre treatment, and erosion dynamics, contributing to the development of optimised, eco-friendly composite materials. Full article (This article belongs to the Special Issue Progress in Recycling of (Bio)Polymers and Composites, 2nd Edition) ►▼ Show Figures Figure 1 Figure 1 16 pages, 1820 KiB Open AccessArticle Critical Cooling Rate of Fast-Crystallizing Polyesters: The Example of Poly(alkylene trans-1,4-cyclohexanedicarboxylate) by Kylian Hallavant, Michelina Soccio, Giulia Guidotti, Nadia Lotti, Antonella Esposito and Allisson Saiter-Fourcin Polymers 2024, 16(19), 2792; https://doi.org/10.3390/polym16192792 - 1 Oct 2024 Abstract Controlling the cooling rate experienced by a material during a manufacturing process is a challenge and a major issue. Industrial processing techniques are very diverse and may involve a whole range of cooling rates, which are sometimes extremely high for small and/or thin [...] Read more. Controlling the cooling rate experienced by a material during a manufacturing process is a challenge and a major issue. Industrial processing techniques are very diverse and may involve a whole range of cooling rates, which are sometimes extremely high for small and/or thin manufactured parts. For polymers, the cooling rate has consequences on both the microstructure and the time-dependent properties. The common cooling rates associated with conventional calorimetric measurements are generally limited to a few tens of degrees per minute. This work combines several calorimetric techniques (DSC, modulated-temperature DSC, stochastically-modulated DSC and Fast Scanning Calorimetry) to estimate the critical cooling rate required to melt-quench fast-crystallizing polyesters to their fully amorphous state, based on the example of a series of poly(alkylene trans-1,4-cyclohexanedicarboxylate) (PCHs) with a number of methylene groups in the main structure of the repeating unit nCH2 varying from 3 to 6. The even-numbered ones require faster cooling rates (about 3000 K s−1 for nCH2 = 4, between 500 and 1000 K s−1 for nCH2 = 6) compared to the odd-numbered ones (between 50 K min−1 and 100 K s−1 for nCH2 = 3, between 10 and 30 K min−1 for nCH2 = 5). Full article (This article belongs to the Special Issue A Commemorative Issue in Honor of Professor Jose M. Kenny: Advances in Polymer Composites and Nanocomposites) ►▼ Show Figures Figure 1 Figure 1 22 pages, 3749 KiB Open AccessArticle Isolation and Structural Characterization of Natural Deep Eutectic Solvent Lignin from Brewer’s Spent Grains by Karina Antoun, Malak Tabib, Sarah Joe Salameh, Mohamed Koubaa, Isabelle Ziegler-Devin, Nicolas Brosse and Anissa Khelfa Polymers 2024, 16(19), 2791; https://doi.org/10.3390/polym16192791 - 1 Oct 2024 Abstract Brewer’s spent grains (BSG) offer valuable opportunities for valorization beyond its conventional use as animal feed. Among its components, lignin—a natural polymer with inherent antioxidant properties—holds significant industrial potential. This work investigates the use of microwave-assisted extraction combined with acidic natural deep eutectic [...] Read more. Brewer’s spent grains (BSG) offer valuable opportunities for valorization beyond its conventional use as animal feed. Among its components, lignin—a natural polymer with inherent antioxidant properties—holds significant industrial potential. This work investigates the use of microwave-assisted extraction combined with acidic natural deep eutectic solvents (NaDESs) for efficient lignin recovery, evaluating three different NaDES formulations. The results indicate that choline chloride–lactic acid (ChCl-LA), a NaDES with superior thermal stability as confirmed via thermogravimetric analysis (TGA), is an ideal solvent for lignin extraction at 150 °C and 15 min, achieving a balance of high yield and quality. ChCl-LA also demonstrated good solubility and cell disruption capabilities, while microwaves significantly reduced processing time and severity. Under optimal conditions, i.e., 150 °C, 15 min, in the presence of ChCl-LA NaDES, the extracted lignin achieved a purity of up to 79% and demonstrated an IC50 (inhibitory concentration 50%) of approximately 0.022 mg/L, indicating a relatively strong antioxidant activity. Fourier transform infrared (FTIR) and 2D-HSQC NMR (heteronuclear single quantum coherence nuclear magnetic resonance) spectroscopy confirmed the successful isolation and preservation of its structural integrity. This study highlights the potential of BSG as a valuable lignocellulosic resource and underscores the effectiveness of acidic NaDESs combined with microwave extraction for lignin recovery. Full article (This article belongs to the Section Biobased and Biodegradable Polymers) ►▼ Show Figures Figure 1 Figure 1 40 pages, 3314 KiB Open AccessReview Water Repellent Coating in Textile, Paper and Bioplastic Polymers: A Comprehensive Review by Nattadon Rungruangkitkrai, Phannaphat Phromphen, Nawarat Chartvivatpornchai, Atcharawan Srisa, Yeyen Laorenza, Phanwipa Wongphan and Nathdanai Harnkarnsujarit Polymers 2024, 16(19), 2790; https://doi.org/10.3390/polym16192790 - 1 Oct 2024 Abstract Water-repellent coatings are essential for enhancing the durability and sustainability of textiles, paper, and bioplastic polymers. Despite the growing use of sustainable materials, their inherent hydrophilicity presents significant challenges. This review explores advanced coating technologies to address these issues, focusing on their mechanisms, [...] Read more. Water-repellent coatings are essential for enhancing the durability and sustainability of textiles, paper, and bioplastic polymers. Despite the growing use of sustainable materials, their inherent hydrophilicity presents significant challenges. This review explores advanced coating technologies to address these issues, focusing on their mechanisms, properties, and applications. By imparting water resistance and repellency, these coatings improve material performance and longevity. The environmental impact and limitations of current coatings are critically assessed, highlighting the need for sustainable solutions. This review identifies key trends and challenges, offering insights into developing water-resistant materials that align with environmental goals while meeting industry demands. Key focus areas include coating mechanisms, techniques, performance evaluation, applications, environmental impact assessment, and the development of sustainable coating solutions. This research contributes to the development of water-resistant materials that meet the demands of modern industries while minimizing environmental impact. Full article (This article belongs to the Special Issue Sustainable Polymers for a Circular Economy) ►▼ Show Figures Figure 1 Figure 1 13 pages, 8819 KiB Open AccessArticle Optimized Drop-Casted Polyaniline Thin Films for High-Sensitivity Electrochemical and Optical pH Sensors by Bruna Eduarda Darolt Mücke, Beatriz Cotting Rossignatti, Luis Miguel Gomes Abegão, Martin Schwellberger Barbosa and Hugo José Nogueira Pedroza Dias Mello Polymers 2024, 16(19), 2789; https://doi.org/10.3390/polym16192789 - 1 Oct 2024 Abstract Conducting polymers used in chemical sensors are attractive because of their ability to confer reversible properties controlled by the doping/de-doping process. Polyaniline (PANI) is one of the most prominent materials used due to its ease of synthesis, tailored properties, and higher stability. Here, [...] Read more. Conducting polymers used in chemical sensors are attractive because of their ability to confer reversible properties controlled by the doping/de-doping process. Polyaniline (PANI) is one of the most prominent materials used due to its ease of synthesis, tailored properties, and higher stability. Here, PANI thin films deposited by the drop-casting method on fluorine-doped tin oxide (FTO) substrates were used in electrochemical and optical sensors for pH measurement. The response of the devices was correlated with the deposition parameters; namely, the volume of deposition solution dropped on the substrate and the concentration of the solution, which was determined by the weight ratio of polymer to solvent. The characterisation of the samples aimed to determine the structure–property relationship of the films and showed that the chemical properties, oxidation states, and protonation level are similar for all samples, as concluded from the cyclic voltammetry and UV–VIS spectroscopic analysis. The sensing performance of the PANI film is correlated with its relative physical properties, thickness, and surface roughness. The highest electrochemical sensitivity obtained was 127.3 ± 6.2 mV/pH, twice the Nernst limit—the highest pH sensitivity reported to our knowledge—from the thicker and rougher sample. The highest optical sensitivity, 0.45 ± 0.05 1/pH, was obtained from a less rough sample, which is desirable as it reduces light scattering and sample oxidation. The results presented demonstrate the importance of understanding the structure–property relationship of materials for optimised sensors and their potential applications where high-sensitivity pH measurement is required. Full article (This article belongs to the Special Issue Polymer Materials for Sensors and Actuators) ►▼ Show Figures Figure 1 Figure 1 18 pages, 5148 KiB Open AccessArticle Effects of Titanium Dioxide (TiO2) on Physico-Chemical Properties of Low-Density Polyethylene by Peter P. Ndibewu, Tina E. Lefakane and Taki E. Netshiozwi Polymers 2024, 16(19), 2788; https://doi.org/10.3390/polym16192788 - 1 Oct 2024 Abstract Hazardous chemicals are transported on rail and road networks. In the case of accidental spillage or terror attack, civilian and military first responders must approach the scene equipped with appropriate personal protective equipment. The plausible manufacturing of chemical protective polymer material, from photocatalyst [...] Read more. Hazardous chemicals are transported on rail and road networks. In the case of accidental spillage or terror attack, civilian and military first responders must approach the scene equipped with appropriate personal protective equipment. The plausible manufacturing of chemical protective polymer material, from photocatalyst anatase titanium dioxide (TiO2) doped low-density polyethylene (LDPE), for cost-effective durable lightweight protective garments against toxic chemicals such as 2-chloroethyl ethyl sulphide (CEES) was investigated. The photocatalytic effects on the physico-chemical properties, before and after ultraviolet (UV) light exposure were evaluated. TiO2 (0, 5, 10, 15% wt) doped LDPE films were extruded and characterized by SEM-EDX, TEM, tensile tester, DSC-TGA and permeation studies before and after exposure to UV light, respectively. Results revealed that tensile strength and thermal analysis showed an increasing shift, whilst CEES permeation times responded oppositely with a significant decrease from 127 min to 84 min due to the degradation of the polymer matrix for neat LDPE, before and after UV exposure. The TiO2-doped films showed an increasing shift in results obtained for physical properties as the doping concentration increased, before and after UV exposure. Relating to chemical properties, the trend was the inverse of the physical properties. The 15% TiO2-doped film showed improved permeation times only when the photocatalytic TiO2 was activated. However, 5% TiO2-doped film exceptionally maintained better permeation times before and after UV exposure demonstrating better resistance against CEES permeation. Full article (This article belongs to the Topic Advanced Polymeric Composites: Processing, Characterization and Mechanical Behavior) ►▼ Show Figures Figure 1 Figure 1 attachment Supplementary material: Supplementary File 1 (ZIP, 337 KiB) 17 pages, 8823 KiB Open AccessArticle Modifying Cassava Starch via Extrusion with Phosphate, Erythorbate and Nitrite: Phosphorylation, Hydrolysis and Plasticization by Phanwipa Wongphan, Cristina Nerin and Nathdanai Harnkarnsujarit Polymers 2024, 16(19), 2787; https://doi.org/10.3390/polym16192787 - 1 Oct 2024 Abstract Extrusion processing of plasticized cassava starch, a prominent industrial crop, with chemical additives offers a thermo-mechanical approach to modify starch structures through physical and chemical interactions. This research investigates the interaction and morphology of thermoplastic cassava starch (TPS) blended with tetrasodium pyrophosphate (Na [...] Read more. Extrusion processing of plasticized cassava starch, a prominent industrial crop, with chemical additives offers a thermo-mechanical approach to modify starch structures through physical and chemical interactions. This research investigates the interaction and morphology of thermoplastic cassava starch (TPS) blended with tetrasodium pyrophosphate (Na4P2O7), sodium tripolyphosphate (Na5P3O10), sodium hexametaphosphate (Na6(PO3)6), sodium erythorbate (C6H7O6Na), and sodium nitrite (NaNO2) via twin-screw extrusion. The effects of these additives on the chemical structure, thermal profile, water absorption, and solubility of the TPS were examined. The high temperature and shearing forces within the extruder disrupted hydrogen bonding at α-(1-4) and α-(1-6) glycosidic linkages within anhydroglucose units. Na4P2O7, Na5P3O10 and Na6(PO3)6 induced starch phosphorylation, while 1H NMR and ATR-FTIR analyses revealed that C6H7O6Na and NaNO2 caused starch hydrolysis. These additives hindered starch recrystallization, resulting in higher amorphous fractions that subsequently influenced the thermal properties and stability of the extruded TPS. Furthermore, the type and content of the added modifier influenced the water absorption and solubility of the TPS due to varying levels of interaction. These modified starch materials exhibited enhanced antimicrobial properties against Escherichia coli and Staphylococcus aureus in polyester blends fabricated via extrusion, with nitrite demonstrating the most potent antimicrobial efficacy. These findings suggest that starch modification via either phosphorylation or acid hydrolysis impacts the thermal properties, morphology, and hydrophilicity of extruded cassava TPS. Full article (This article belongs to the Special Issue Polymer Materials and Polymer Composites—on the Way to Sustainable Development) ►▼ Show Figures Figure 1 Figure 1 28 pages, 3207 KiB Open AccessArticle Influence of Poly(Ethylene Glycol) Dimethacrylates’ Chain Length on Electrical Conductivity and Other Selected Physicochemical Properties of Thermally Sensitive N-isopropylacrylamide Derivatives by Agnieszka Gola, Borys Podżus, Kinga Gruszka and Witold Musiał Polymers 2024, 16(19), 2786; https://doi.org/10.3390/polym16192786 - 30 Sep 2024 Abstract Thermosensitive polymers P1–P6 of N-isopropylacrylamide (PNIPA) and poly(ethylene glycol) dimethacrylates (PEGDMAs), av. Mn 550–20,000, were synthesized via surfactant-free precipitation polymerization (SFPP) using ammonium persulfate (APS) at 70 °C. The polymerization course was monitored by the conductivity. The hydrodynamic diameters (HDs) and the polydispersity [...] Read more. Thermosensitive polymers P1–P6 of N-isopropylacrylamide (PNIPA) and poly(ethylene glycol) dimethacrylates (PEGDMAs), av. Mn 550–20,000, were synthesized via surfactant-free precipitation polymerization (SFPP) using ammonium persulfate (APS) at 70 °C. The polymerization course was monitored by the conductivity. The hydrodynamic diameters (HDs) and the polydispersity indexes (PDIs) of the aqueous dispersion of P1–P6 in the 18–45 °C range, assessed via dynamic light scattering (DLS), were at 18° as follows (nm): 73.95 ± 19.51 (PDI 0.57 ± 0.08), 74.62 ± 0.76 (PDI 0.56 ± 0,01), 69.45 ± 1.47 (PDI 0.57 ± 0.03), 196.2 ± 2.50 (PDI 0.53 ± 0.04), 194.30 ± 3.36 (PDI 0.56 ± 0.04), 81.99 ± 0.53 (PDI 0.56 ± 0.01), 76.87 ± 0.30 (PDI 0.54 ± 0.01), respectively. The electrophoretic mobilities estimated the zeta potential (ZP) in the 18–45 °C range, and at 18 °C they were as follows (mV): −2.57 ± 0.10, −4.32 ± 0.67, −5.34 ± 0.95, −-3.02 ± 0.76, −4.71 ± 2.69, −2.30 ± 0.36, −2.86 ± 0.42 for polymer dispersion P1–P6. The polymers were characterized by attenuated total reflectance–Fourier transform infrared spectroscopy (ATR-FTIR), H nuclear magnetic resonance (1H NMR), thermogravimetric analysis (TG/DTA), Differential Scanning Calorimetry (DSC), and powder X-ray diffraction analysis (PXRD). The length of the cross-linker chain influences the physicochemical properties of the obtained polymers. Full article (This article belongs to the Section Polymer Chemistry) attachment Supplementary material: Supplementary File 1 (ZIP, 898 KiB) 20 pages, 3077 KiB Open AccessArticle Enhanced Cellulose Extraction from Banana Pseudostem Waste: A Comparative Analysis Using Chemical Methods Assisted by Conventional and Focused Ultrasound by Alba N. Ardila A., Erasmo Arriola-Villaseñor, Efraín Enrique Villegas González, Hegnny Estefanía González Guerrero, José Alfredo Hernández-Maldonado, Eduart Gutiérrez-Pineda and Cristian C. Villa Polymers 2024, 16(19), 2785; https://doi.org/10.3390/polym16192785 - 30 Sep 2024 Abstract This study investigates the effectiveness of various chemical methods, both ultrasound-assisted and non-assisted, for extracting cellulose from banana pseudostem (BPS) waste, comparing the results with commercial pine and eucalyptus cellulose fibers. Delignification treatments with NaOH (25% and 30%) and H2O2 [...] Read more. This study investigates the effectiveness of various chemical methods, both ultrasound-assisted and non-assisted, for extracting cellulose from banana pseudostem (BPS) waste, comparing the results with commercial pine and eucalyptus cellulose fibers. Delignification treatments with NaOH (25% and 30%) and H2O2 (8%) were evaluated, applied with both conventional and focused sonication. Ultrasound-assisted methods, particularly with NaOH, achieved cellulose percentages as high as 99.5%. X-ray diffraction (XRD) analysis revealed that NaOH treatments significantly increased the cellulose crystallinity index, reaching up to 67.9%, surpassing commercial fibers. Scanning electron microscopy (SEM) results showed that NaOH treatments, especially at 30%, improved fiber morphology and exposure. Thermogravimetric analysis (TGA) indicated that methods using NaOH and focused sonication enhanced the thermal stability of the cellulose. Compared to commercial fibers, some samples obtained with the proposed methods demonstrated higher purity, yield, and thermal stability, highlighting the effectiveness of ultrasound-assisted and NaOH methods. Full article (This article belongs to the Section Biobased and Biodegradable Polymers) 24 pages, 1393 KiB Open AccessArticle Evaluation of Additives on the Cell Metabolic Activity of New PHB/PLA-Based Formulations by Means of Material Extrusion 3D Printing for Scaffold Applications by Ivan Dominguez-Candela, Lluc Sempere-José, Ignacio Sandoval-Perez and Asunción Martínez-García Polymers 2024, 16(19), 2784; https://doi.org/10.3390/polym16192784 - 30 Sep 2024 Abstract In this study, specific additives were incorporated in polyhydroxyalcanoate (PHB) and polylactic acid (PLA) blend to improve its compatibility, and so enhance the cell metabolic activity of scaffolds for tissue engineering. The formulations were manufactured through material extrusion (MEX) additive manufacturing (AM) technology. [...] Read more. In this study, specific additives were incorporated in polyhydroxyalcanoate (PHB) and polylactic acid (PLA) blend to improve its compatibility, and so enhance the cell metabolic activity of scaffolds for tissue engineering. The formulations were manufactured through material extrusion (MEX) additive manufacturing (AM) technology. As additives, petroleum-based poly(ethylene) with glicidyl metacrylate (EGM) and methyl acrylate-co-glycidyl methacrylate (EMAG); poly(styrene-co-maleic anhydride) copolymer (Xibond); and bio-based epoxidized linseed oil (ELO) were used. On one hand, standard geometries manufactured were assessed to evaluate the compatibilizing effect. The additives improved the compatibility of PHB/PLA blend, highlighting the effect of EMAG and ELO in ductile properties. The processability was also enhanced for the decrease in melt temperature as well as the improvement of thermal stability. On the other hand, manufactured scaffolds were evaluated for the purpose of bone regeneration. The mean pore size and porosity exhibited values between 675 and 718 μm and 50 and 53%, respectively. According to the results, the compression stress was higher (11–13 MPa) than the required for trabecular bones (5–10 MPa). The best results in cell metabolic activity were obtained by incorporating ELO and Xibond due to the decrease in water contact angle, showing a stable cell attachment after 7 days of culture as observed in SEM. Full article (This article belongs to the Special Issue 3D-Printed Polymers for Tissue Engineering or Bioelectronics) 20 pages, 898 KiB Open AccessReview Exploring the Potential of Pectin as a Source of Biopolymers for Active and Intelligent Packaging: A Review by Andi Dirpan, Yosini Deliana, Andi Fadiah Ainani, Irwan and Nur Alim Bahmid Polymers 2024, 16(19), 2783; https://doi.org/10.3390/polym16192783 - 30 Sep 2024 Abstract The use of fossil-based plastics in food packaging poses a serious environmental concern. Pectin, a natural biodegradable polymer, offers a potential solution for environmentally friendly and sustainable food packaging to replace fossil-based plastics. This article reviews the applications of pectin in active and [...] Read more. The use of fossil-based plastics in food packaging poses a serious environmental concern. Pectin, a natural biodegradable polymer, offers a potential solution for environmentally friendly and sustainable food packaging to replace fossil-based plastics. This article reviews the applications of pectin in active and intelligent packaging and analyzes the latest research trends. Bibliometric analysis was used to review the existing literature on pectin in food packaging. Data were collected from the Scopus database, which covers research on film manufacturing and pectin-based coating. Pectin-based active packaging contains antimicrobial and antioxidant compounds such as ascorbic acid and essential oils, which effectively prevent bacterial growth while absorbing oxygen and water vapor. In contrast, pectin-based intelligent packaging allows real-time monitoring of food quality through integrated color-changing indicators, eliminating the need for open packaging. Research trends have shown a significant increase in publications on pectin-based packaging, reflecting the growing interest in sustainable packaging solutions. With a focus on innovation and sustainability, pectin can replace conventional plastics and provide safer and more durable packaging solutions, thereby supporting global efforts to reduce the environmental impact of plastic waste. Full article (This article belongs to the Section Polymer Applications) attachment Supplementary material: Supplementary File 1 (ZIP, 2110 KiB) 31 pages, 875 KiB Open AccessArticle Proposal for a New Method for Evaluating Polymer-Modified Bitumen Fatigue and Self-Restoration Performances Considering the Whole Damage Characteristic Curve by Songtao Lv, Dongdong Ge, Shihao Cao, Dingyuan Liu, Wenhui Zhang, Cheng-Hui Li and Milkos Borges Cabrera Polymers 2024, 16(19), 2782; https://doi.org/10.3390/polym16192782 - 30 Sep 2024 Abstract Fatigue performance and self-repairing activity of asphalt binders are two properties that highly influence the fatigue cracking response of asphalt pavement. There are still numerous gaps in knowledge to fill linked with these two characteristics. For instance, current parameters fail to accommodate these [...] Read more. Fatigue performance and self-repairing activity of asphalt binders are two properties that highly influence the fatigue cracking response of asphalt pavement. There are still numerous gaps in knowledge to fill linked with these two characteristics. For instance, current parameters fail to accommodate these two bitumen phenomena fully. This study aims to propose a new procedure to address this issue utilizing the linear amplitude sweep (LAS) test, LAS with rest period (RP) (LASH) test, and simplified viscoelastic continuum damage (S-VECD) model. This research work used four different types of asphalt binders: neat asphalt (NA), self-healing thermoplastic polyurethane (STPU)-modified bitumen (STPB), self-healing poly (dimethyl siloxane) crosslinked with urea bond (IPA1w)-modified bitumen (IPAB), and styrene–butadiene–styrene (SBS)-modified bitumen (SBSB). Before the testing process, all the materials were subjected to short-term and long-term aging. The new procedure showed a superior capacity to analyze and accommodate all bitumen fatigue performances and self-repairing activities compared to the current method. Another finding proved that asphalt binders with a higher self-restoration behavior failed to show a better fatigue performance. Moreover, the higher fatigue performance increments produced by STPU and IPA1w in NA concerning the control bitumen were 123.7% and 143.7%, respectively. Those values were obtained with 1.0% STPU and 0.5% IPA1w in NA. A breakthrough finding demonstrated that asphalt binder fatigue response is augmented when the RP was applied at a higher damage intensity (S) value. STPB and IPAB reached their highest increments of fatigue response, containing 1.0% of STPU and 0.5% of IPA1w, respectively. Those augmentations were 207.54% and 232.64%, respectively. Full article (This article belongs to the Special Issue Application of Polymer Materials in Pavement Design: 2nd Edition) 14 pages, 2586 KiB Open AccessArticle Formulation and Characterization of Deep Eutectic Solvents and Potential Application in Recycling Packaging Laminates by Adamantini Loukodimou, Christopher Lovell, Tianmiao Li, George Theodosopoulos, Kranthi Kumar Maniam and Shiladitya Paul Polymers 2024, 16(19), 2781; https://doi.org/10.3390/polym16192781 - 30 Sep 2024 Abstract Deep Eutectic Solvents (DESs) show promising abilities for the delamination of multilayer packaging films that are used in food packaging and in pharmaceutical blister packs. Due to the complexity of their structure, the recycling of such materials is a challenging task, leading to [...] Read more. Deep Eutectic Solvents (DESs) show promising abilities for the delamination of multilayer packaging films that are used in food packaging and in pharmaceutical blister packs. Due to the complexity of their structure, the recycling of such materials is a challenging task, leading to the easiest or cheapest disposal option of either landfill or incineration. Towards the development of ‘green’ solvents for efficient waste management and recycling, this research focuses on the preparation of a range of hydrophobic and hydrophilic DESs based on carboxylic acids in combination with various naturally derived aliphatic and aromatic organic compounds as well as amino acids. Chemical and physical characterization of the solvents was undertaken using differential scanning calorimetry, rheometry, and density measurements for the determination of their properties. Subsequently, batches of solvent were tested against different types of consumer packaging to evaluate the ability of the DES to delaminate these structures into their component materials. The laminate packaging waste products tested were Al/PE, PE/Al/PET, Al/PE/paper, and PVC/PE/Al. Separated films were collected and studied to further examine the effect of solvent delamination on the materials. Depending on the DES formulation, the results showed either partial or full delamination of one or more of the packaging materials, albeit there were challenges for certain solvent systems in the context of delivering a broad delamination efficiency. Variables including temperature, agitation rate, mixing time, and solvent ratios were investigated via a Design of Experiments process to assess the effects of these parameters on the delamination outcome. The results showed that the DESs presented in this research can offer an efficient, low-energy, affordable, and green option for the delamination of laminate packaging materials. Full article (This article belongs to the Section Circular and Green Polymer Science) attachment Supplementary material: Supplementary File 1 (ZIP, 1823 KiB) 22 pages, 1525 KiB Open AccessArticle Innovative Poly(Lactic Acid) Blends: Exploring the Impact of the Diverse Chemical Architectures from Itaconic Acid by Miriam Carrasco-Fernández, Erika Ivonne López-Martínez, Sergio Gabriel Flores-Gallardo, Iván Alziri Estrada-Moreno, Mónica Elvira Mendoza-Duarte and Alejandro Vega-Rios Polymers 2024, 16(19), 2780; https://doi.org/10.3390/polym16192780 - 30 Sep 2024 Abstract Environment-friendly polymer blends of poly(lactic acid) (PLA) and itaconic acid (IA), poly(itaconic acid) (PIA), poly(itaconic acid)-co-poly(methyl itaconate) (Cop-IA), and net-poly(itaconic acid)-ν-triethylene glycol dimethacrylate (Net-IA) were performed via melt blending. The compositions studied were 0.1, 1, 3, and 10 [...] Read more. Environment-friendly polymer blends of poly(lactic acid) (PLA) and itaconic acid (IA), poly(itaconic acid) (PIA), poly(itaconic acid)-co-poly(methyl itaconate) (Cop-IA), and net-poly(itaconic acid)-ν-triethylene glycol dimethacrylate (Net-IA) were performed via melt blending. The compositions studied were 0.1, 1, 3, and 10 wt% of the diverse chemical architectures. The research aims to study and understand the effect of IA and its different architectures on the mechanical, rheological, and thermal properties of PLA. The PLA/IA, PLA/PIA, PLA/Cop-IA, and PLA/Net-IA blends were characterized by dynamic mechanical thermal analysis, rotational rheometer (RR), thermogravimetric analysis, differential scanning calorimetry, X-ray diffraction, and scanning electron microscopy. The complex viscosity, storage module, and loss module for the RR properties were observed in the following order: PLA/Cop-IA, PLA/Net-IA, and PLA/PIA > PLA > PLA/IA. Thermal stability improved with increasing concentrations of Cop-IA and Net-IA. In the same way, the mechanical properties were enhanced. In addition, the micrographs illustrated the formation of fibrillar structures for all blends. The crystallinity degree displayed higher values for the blends that contain Net-IA > Cop-IA than IA > PIA. Therefore, IA and its architectures can influence these studied properties, which have potential applications in disposable food packing. Full article (This article belongs to the Collection Advances in Polymer Blends and Composites: Chemistry and Technology) 20 pages, 3147 KiB Open AccessArticle Valorisation of Blackcurrant Pomace by Extraction of Pectin-Rich Fractions: Structural Characterization and Evaluation as Multifunctional Cosmetic Ingredient by Marija Ćorović, Anja Petrov Ivanković, Ana Milivojević, Milica Veljković, Milica Simović, Paula López-Revenga, Antonia Montilla, Francisco Javier Moreno and Dejan Bezbradica Polymers 2024, 16(19), 2779; https://doi.org/10.3390/polym16192779 - 30 Sep 2024 Abstract Blackcurrant pomace is a widely available waste stream derived from the industrial production of juice rich in pectin and unextracted polyphenols. Since pectin, an emerging class of gastrointestinal prebiotics, is also a common cosmetic ingredient, the aim of this work was to evaluate [...] Read more. Blackcurrant pomace is a widely available waste stream derived from the industrial production of juice rich in pectin and unextracted polyphenols. Since pectin, an emerging class of gastrointestinal prebiotics, is also a common cosmetic ingredient, the aim of this work was to evaluate blackcurrant pomace as a source of pectin-rich fractions suitable for application in prebiotic cosmetics. Hereby, this raw material was valorised by sequential extraction of acid-soluble (by citric acid, CAP) and Ca-bound (by ammonium oxalate, AOPP) pectic polysaccharides. Both fractions had favourable physicochemical features and a similar degree of methyl-esterification between low- and high-methoxyl pectin (approx. 50%), but CAP had significantly higher galacturonic acid content (72.3%), branching, and purity. Regardless of that, both had very high oil (18.96 mL/g for CAP and 19.32 mL/g for AOPP) and water (9.97 mL/g for CAP and 7.32 mL/g for AOPP)-holding capacities and excellent emulsifying properties, making them promising cosmetic ingredients. The polyphenol content was 10 times higher in CAP, while corresponding antioxidant activity was 3-fold higher. Finally, the influence of varying CAP and AOPP concentrations on common skin pathogen, Staphylococcus aureus, and beneficial skin bacteria, Staphylococcus epidermidis, was examined. The results show significant prebiotic potential of two pectic fractions since they were capable of selectively stimulating S. epidermidis, while S. aureus growth was inhibited, whereas CAP demonstrated a particularly high capacity of up to 2.2, even with methicillin-resistant S. aureus. Full article (This article belongs to the Section Biobased and Biodegradable Polymers) More Articles... Submit to Polymers Review for Polymers Share JOURNAL MENU ► ▼ Journal Menu * * Polymers Home * Aims & Scope * Editorial Board * Reviewer Board * Topical Advisory Panel * Instructions for Authors * Special Issues * Topics * Sections & Collections * Article Processing Charge * Indexing & Archiving * Editor’s Choice Articles * Most Cited & Viewed * Journal Statistics * Journal History * Journal Awards * Society Collaborations * Conferences * Editorial Office JOURNAL BROWSER ► ▼ Journal Browser volume 16 15 14 13 12 11 10 9 8 7 6 5 4 3 2 1 volume issue 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 1 2 3 4 5 6 7 8 9 10 11 12 1 2 3 4 5 6 7 8 9 10 11 12 1 2 3 4 5 6 7 8 9 10 11 12 1 2 3 4 5 6 7 8 9 10 11 12 1 2 3 4 5 6 7 8 9 10 11 12 1 2 3 4 5 6 7 8 9 10 11 12 1 2 3 4 5 6 7 8 9 10 11 12 1 2 3 4 1 2 3 4 1 2 3 4 1 2 3 4 1 issue * arrow_forward_ios Forthcoming issue arrow_forward_ios Current issue Vol. 16 (2024) Vol. 15 (2023) Vol. 14 (2022) Vol. 13 (2021) Vol. 12 (2020) Vol. 11 (2019) Vol. 10 (2018) Vol. 9 (2017) Vol. 8 (2016) Vol. 7 (2015) Vol. 6 (2014) Vol. 5 (2013) Vol. 4 (2012) Vol. 3 (2011) Vol. 2 (2010) Vol. 1 (2009) HIGHLY ACCESSED ARTICLES Review Opportunities and Challenges in the Application of Bioplastics: Perspectives from Formulation, Processing, and Performance by Daniela Negrete-Bolagay and Víctor H. Guerrero Polymers 2024, 16(18), 2561; https://doi.org/10.3390/polym16182561 Published: 10 September 2024 Article Injectable Carrageenan/Green Graphene Oxide Hydrogel: A Comprehensive Analysis of Mechanical, Rheological, and Biocompatibility Properties by Danny Moncada et al. Polymers 2024, 16(16), 2345; https://doi.org/10.3390/polym16162345 Published: 19 August 2024 Article Evaluation of Fatigue Damage Monitoring of Single-Lap Composite Adhesive Joint Using Conductivity by Chow-Shing Shin and Shun-Hsuan Huang Polymers 2024, 16(16), 2374; https://doi.org/10.3390/polym16162374 Published: 22 August 2024 Review Electrolytes for High-Safety Lithium-Ion Batteries at Low Temperature: A Review by Shuhong Yun et al. Polymers 2024, 16(18), 2661; https://doi.org/10.3390/polym16182661 Published: 21 September 2024 Article The Impact of Biomass Composition Variability on the Char Features and Yields Resulted through Thermochemical Processes by Emanuel-Gheorghita Armanu et al. Polymers 2024, 16(16), 2334; https://doi.org/10.3390/polym16162334 Published: 18 August 2024 Editorial Advanced Polymeric Scaffolds for Stem Cell Engineering and Regenerative Medicine by João Carlos Silva and Frederico Castelo Ferreira Polymers 2024, 16(18), 2667; https://doi.org/10.3390/polym16182667 Published: 22 September 2024 Review Integrative Modeling and Experimental Insights into 3D and 4D Printing Technologies by Angel Cabrera Pereira et al. Polymers 2024, 16(19), 2686; https://doi.org/10.3390/polym16192686 Published: 24 September 2024 Review Collagen and Its Derivatives Serving Biomedical Purposes: A Review by Hanna Wosicka-Frąckowiak et al. Polymers 2024, 16(18), 2668; https://doi.org/10.3390/polym16182668 Published: 22 September 2024 Article Innovative Application of Salophen Derivatives in Organic Electronics as a Composite Film with a Poly(3,4-Ethylenedioxythiophene)-poly(styrenesulfonate) Matrix by María Elena Sánchez Vergara et al. Polymers 2024, 16(18), 2622; https://doi.org/10.3390/polym16182622 Published: 17 September 2024 Review Wound Dressing with Electrospun Core-Shell Nanofibers: From Material Selection to Synthesis by Nariman Rajabifar et al. Polymers 2024, 16(17), 2526; https://doi.org/10.3390/polym16172526 Published: 5 September 2024 Review Protein Immobilization on Bacterial Cellulose for Biomedical Application by Anastasia N. Shishparenok et al. Polymers 2024, 16(17), 2468; https://doi.org/10.3390/polym16172468 Published: 30 August 2024 Article Delamination and Evaluation of Multilayer PE/Al/PET Packaging Waste Separated Using a Hydrophobic Deep Eutectic Solvent by Adamantini Loukodimou et al. Polymers 2024, 16(19), 2718; https://doi.org/10.3390/polym16192718 Published: 25 September 2024 Article Effect of Surface Contamination on Near-Infrared Spectra of Biodegradable Plastics by Namrata Mhaddolkar et al. Polymers 2024, 16(16), 2343; https://doi.org/10.3390/polym16162343 Published: 19 August 2024 Review Biodegradable Polymeric Nanoparticle-Based Drug Delivery Systems: Comprehensive Overview, Perspectives and Challenges by Małgorzata Geszke-Moritz and Michał Moritz Polymers 2024, 16(17), 2536; https://doi.org/10.3390/polym16172536 Published: 7 September 2024 Review Biodegradable Natural Hydrogels for Tissue Engineering, Controlled Release, and Soil Remediation by Ane Garcia-Garcia et al. Polymers 2024, 16(18), 2599; https://doi.org/10.3390/polym16182599 Published: 14 September 2024 View More... LATEST BOOKS Reprint Polymer Materials in Sensors, Actuators and Energy Conversion II Editor: Jung-Chang Wang Reprint Advance in Polymer Composites: Fire Protection and Thermal Management Editors: Fei Xiao, Fubin Luo, Ke Sun More Books and Reprints... 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