The critical role of temperature-dependent mobilities in determining the open-circuit voltage of bulk-heterojunction organic solar cells
Author:
Affiliation:
1. Department of Materials Science and Engineering, Monash University 1 , Victoria 3800, Australia
2. ARC Centre of Excellence in Exciton Science, School of Chemistry, The University of Sydney 2 , Camperdown, NSW 2006, Australia
Abstract
Funder
Australian Research Council Centre of Excellence in Exciton Science
Publisher
AIP Publishing
Subject
Physics and Astronomy (miscellaneous)
Link
https://pubs.aip.org/aip/apl/article-pdf/doi/10.1063/5.0158833/18218519/213501_1_5.0158833.pdf
Reference33 articles.
1. The Path to 20% Power Conversion Efficiencies in Nonfullerene Acceptor Organic Solar Cells;Adv Energy Mater,2021
2. A Commercial Benchmark: Light-Soaking Free, Fully Scalable, Large-Area Organic Solar Cells for Low-Light Applications;Adv Energy Mater,2021
3. Temperature and Light Modulated Open-Circuit Voltage in Nonfullerene Organic Solar Cells with Different Effective Bandgaps;Adv Energy Mater,2021
4. Temperature dependence of open-circuit voltage in organic solar cells from generation–recombination kinetic balance;Sol. Energy Mater. Sol. Cells,2010
5. Temperature-Independent Charge Carrier Photogeneration in P3HT−PCBM Blends with Different Morphology;J. Phys. Chem. C,2010
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