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Multicomponent Solar Cells with High Fill Factors and Efficiencies Based on Non-Fullerene Acceptor Isomers

Multicomponent organic solar cells (OSCs), such as the ternary and quaternary OSCs, not only inherit the simplicity of binary OSCs but further promote light harvesting and power conversion efficiency (PCE). Here, we propose a new type of multicomponent solar cells with non-fullerene acceptor isomers...

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Autores principales: Wang, Qiuning, Hou, Yiwen, Shi, Shasha, Yang, Tao, Huang, Ciyuan, Yao, Shangfei, Zhang, Ziyang, Zhao, Chenfu, Liu, Yudie, Huang, Hui, Wang, Lihong, Zhao, Chaoyue, Hao, Minghui, Tian, Ye, Zou, Bingsuo, Zhang, Guangye
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9504682/
https://www.ncbi.nlm.nih.gov/pubmed/36144539
http://dx.doi.org/10.3390/molecules27185802
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author Wang, Qiuning
Hou, Yiwen
Shi, Shasha
Yang, Tao
Huang, Ciyuan
Yao, Shangfei
Zhang, Ziyang
Zhao, Chenfu
Liu, Yudie
Huang, Hui
Wang, Lihong
Zhao, Chaoyue
Hao, Minghui
Tian, Ye
Zou, Bingsuo
Zhang, Guangye
author_facet Wang, Qiuning
Hou, Yiwen
Shi, Shasha
Yang, Tao
Huang, Ciyuan
Yao, Shangfei
Zhang, Ziyang
Zhao, Chenfu
Liu, Yudie
Huang, Hui
Wang, Lihong
Zhao, Chaoyue
Hao, Minghui
Tian, Ye
Zou, Bingsuo
Zhang, Guangye
author_sort Wang, Qiuning
collection PubMed
description Multicomponent organic solar cells (OSCs), such as the ternary and quaternary OSCs, not only inherit the simplicity of binary OSCs but further promote light harvesting and power conversion efficiency (PCE). Here, we propose a new type of multicomponent solar cells with non-fullerene acceptor isomers. Specifically, we fabricate OSCs with the polymer donor J71 and a mixture of isomers, ITCF, as the acceptors. In comparison, the ternary OSC devices with J71 and two structurally similar (not isomeric) NFAs (IT-DM and IT-4F) are made as control. The morphology experiments reveal that the isomers-containing blend film demonstrates increased crystallinity, more ideal domain size, and a more favorable packing orientation compared with the IT-DM/IT-4F ternary blend. The favorable orientation is correlated with the balanced charge transport, increased exciton dissociation and decreased bimolecular recombination in the ITCF-isomer-based blend film, which contributes to the high fill factor (FF), and thus the high PCE. Additionally, to evaluate the generality of this method, we examine other acceptor isomers including IT-M, IXIC-2Cl and SY1, which show same trend as the ITCF isomers. These results demonstrate that using isomeric blends as the acceptor can be a promising approach to promote the performance of multicomponent non-fullerene OSCs.
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spelling pubmed-95046822022-09-24 Multicomponent Solar Cells with High Fill Factors and Efficiencies Based on Non-Fullerene Acceptor Isomers Wang, Qiuning Hou, Yiwen Shi, Shasha Yang, Tao Huang, Ciyuan Yao, Shangfei Zhang, Ziyang Zhao, Chenfu Liu, Yudie Huang, Hui Wang, Lihong Zhao, Chaoyue Hao, Minghui Tian, Ye Zou, Bingsuo Zhang, Guangye Molecules Article Multicomponent organic solar cells (OSCs), such as the ternary and quaternary OSCs, not only inherit the simplicity of binary OSCs but further promote light harvesting and power conversion efficiency (PCE). Here, we propose a new type of multicomponent solar cells with non-fullerene acceptor isomers. Specifically, we fabricate OSCs with the polymer donor J71 and a mixture of isomers, ITCF, as the acceptors. In comparison, the ternary OSC devices with J71 and two structurally similar (not isomeric) NFAs (IT-DM and IT-4F) are made as control. The morphology experiments reveal that the isomers-containing blend film demonstrates increased crystallinity, more ideal domain size, and a more favorable packing orientation compared with the IT-DM/IT-4F ternary blend. The favorable orientation is correlated with the balanced charge transport, increased exciton dissociation and decreased bimolecular recombination in the ITCF-isomer-based blend film, which contributes to the high fill factor (FF), and thus the high PCE. Additionally, to evaluate the generality of this method, we examine other acceptor isomers including IT-M, IXIC-2Cl and SY1, which show same trend as the ITCF isomers. These results demonstrate that using isomeric blends as the acceptor can be a promising approach to promote the performance of multicomponent non-fullerene OSCs. MDPI 2022-09-07 /pmc/articles/PMC9504682/ /pubmed/36144539 http://dx.doi.org/10.3390/molecules27185802 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Wang, Qiuning
Hou, Yiwen
Shi, Shasha
Yang, Tao
Huang, Ciyuan
Yao, Shangfei
Zhang, Ziyang
Zhao, Chenfu
Liu, Yudie
Huang, Hui
Wang, Lihong
Zhao, Chaoyue
Hao, Minghui
Tian, Ye
Zou, Bingsuo
Zhang, Guangye
Multicomponent Solar Cells with High Fill Factors and Efficiencies Based on Non-Fullerene Acceptor Isomers
title Multicomponent Solar Cells with High Fill Factors and Efficiencies Based on Non-Fullerene Acceptor Isomers
title_full Multicomponent Solar Cells with High Fill Factors and Efficiencies Based on Non-Fullerene Acceptor Isomers
title_fullStr Multicomponent Solar Cells with High Fill Factors and Efficiencies Based on Non-Fullerene Acceptor Isomers
title_full_unstemmed Multicomponent Solar Cells with High Fill Factors and Efficiencies Based on Non-Fullerene Acceptor Isomers
title_short Multicomponent Solar Cells with High Fill Factors and Efficiencies Based on Non-Fullerene Acceptor Isomers
title_sort multicomponent solar cells with high fill factors and efficiencies based on non-fullerene acceptor isomers
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9504682/
https://www.ncbi.nlm.nih.gov/pubmed/36144539
http://dx.doi.org/10.3390/molecules27185802
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