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 * ABSTRACT

 * Home >
 * Applied Physics Letters >
 * Volume 119, Issue 7 >
 * 10.1063/5.0054086


Next
No Access Submitted: 14 April 2021 Accepted: 04 July 2021 Published Online: 17
August 2021
 * PEROVSKITE/SILICON TANDEM PHOTOVOLTAICS: TECHNOLOGICAL DISRUPTION WITHOUT
   BUSINESS DISRUPTION
 * 


Appl. Phys. Lett. 119, 070501 (2021); https://doi.org/10.1063/5.0054086
Christina Kamaraki1,2, Matthew T. Klug1, Thomas Green1, Laura Miranda Perez1,a),
and Christopher Case1,a)
more...View Affiliations
 * 1Oxford PV, Unit 7/8 Mead Road, Yarnton OX5 1QU, United Kingdom
 * 2Department of Physics, University of Bath, Claverton Down, Bath BA2 7AY,
   United Kingdom
 * a)Authors to whom correspondence should be addressed:
   laura.miranda@oxfordpv.com and chris.case@oxfordpv.com

   Note: This paper is part of the APL Special Collection on Scalable Ways to
   Break the Efficiency Limit of Single-Junction Solar Cells.

View Contributors
 * Christina Kamaraki
 * Matthew T. Klug
 * Thomas Green
 * Laura Miranda Perez
 * Christopher Case




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ABSTRACT
Meeting the ambitious challenge of net-zero greenhouse gas emissions by 2050 and
holding the average increase in global temperature below 1.5 °C necessitate the
upscaling of readily available renewable energy sources, especially solar
photovoltaics. Since the window of time to achieve this goal is closing fast, it
is of paramount importance that we accelerate the decarbonization of the global
energy system by increasing the power output of solar cells through advancing
their power conversion efficiencies toward and beyond the Shockley–Queisser
limit. In this Perspective, we describe how the integration of perovskites into
the well-established silicon production infrastructure to form
perovskite/silicon tandem photovoltaics can raise the rate of solar deployment.
We present a holistic analysis of the technology from different perspectives,
such as materials science, manufacturing, sustainability, and business, which
highlights how the pairing of perovskite and silicon is advantageous at many
different levels of consideration. Altogether, perovskite/silicon tandems
deliver a technological disruption in efficiency while maintaining compatibility
with the present photovoltaics industry, making it the fastest route to enhance
the silicon market and rapidly address climate change.
C.K. would like to acknowledge funding from the European Union's Horizon 2020
Framework Program for funding Research and Innovation under Grant Agreement No.
764787 (MAESTRO).
All of the authors are employees at Oxford Photovoltaics, Ltd.
true










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