Maximizing the external radiative efficiency of hybrid perovskite solar cells

Authors
Dequilettes, DW 
Laitz, M 
Brenes, R 
Dou, B 
Motes, BT 

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Article
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Abstract

© 2020 IUPAC & De Gruyter. This work is licensed under a Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International License. For more information, please visit: http://creativecommons.org/licenses/by-nc-nd/4.0/ 2020. Despite rapid advancements in power conversion efficiency in the last decade, perovskite solar cells still perform below their thermodynamic efficiency limits. Non-radiative recombination, in particular, has limited the external radiative efficiency and open circuit voltage in the highest performing devices. We review the historical progress in enhancing perovskite external radiative efficiency and determine key strategies for reaching high optoelectronic quality. Specifically, we focus on non-radiative recombination within the perovskite layer and highlight novel approaches to reduce energy losses at interfaces and through parasitic absorption. By strategically targeting defects, it is likely that the next set of record-performing devices with ultra-low voltage losses will be achieved.

Publication Date
2020-05-01
Online Publication Date
2020-04-20
Acceptance Date
2020-03-31
Keywords
2018 IUPAC-Solvay Award, electroluminescence, non-radiative recombination, perovskite, photoluminescence, photovoltaics, solar energy, voltage loss
Journal Title
Pure and Applied Chemistry
Journal ISSN
0033-4545
1365-3075
Volume Title
92
Publisher
Walter de Gruyter GmbH
Sponsorship
Royal Society (UF150033)