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Significantly Enhanced Molecular Stacking in Ternary Bulk Heterojunctions Enabled by an Appropriate Side Group on Donor Polymer

Ternary strategy is a promising approach to broaden the photoresponse of polymer solar cells (PSCs) by adopting combinatory photoactive blends. However, it could lead to a more complicated situation in manipulating the bulk morphology. Achieving an ideal morphology that enhances the charge transport...

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Autores principales: Jiang, Huanxiang, Li, Xiaoming, Wang, Huan, Ren, Zhitao, Zheng, Nan, Wang, Xunchang, Li, Yonghai, Chen, Weichao, Yang, Renqiang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7141074/
https://www.ncbi.nlm.nih.gov/pubmed/32274321
http://dx.doi.org/10.1002/advs.201903455
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author Jiang, Huanxiang
Li, Xiaoming
Wang, Huan
Ren, Zhitao
Zheng, Nan
Wang, Xunchang
Li, Yonghai
Chen, Weichao
Yang, Renqiang
author_facet Jiang, Huanxiang
Li, Xiaoming
Wang, Huan
Ren, Zhitao
Zheng, Nan
Wang, Xunchang
Li, Yonghai
Chen, Weichao
Yang, Renqiang
author_sort Jiang, Huanxiang
collection PubMed
description Ternary strategy is a promising approach to broaden the photoresponse of polymer solar cells (PSCs) by adopting combinatory photoactive blends. However, it could lead to a more complicated situation in manipulating the bulk morphology. Achieving an ideal morphology that enhances the charge transport and light absorption simultaneously is an essential avenue to promote the device performance. Herein, two polymers with different lengths of side groups (P1 is based on phenyl side group and P2 is based on biphenyl side group) are adopted in the dual‐acceptor ternary systems to evaluate the relationship between conjugated side group and crystalline behavior in the ternary system. The P1 ternary system delivers a greatly improved power conversion efficiency (PCE) of 13.06%, which could be attributed to the intense and broad photoresponse and improved charge transport originating from the improved crystallinity. Inversely, the P2 ternary device only exhibits a poor PCE of 8.97%, where the decreased device performance could mainly be ascribed to the disturbed molecular stacking of the components originating from the overlong conjugated side group. The results demonstrate a conjugated side group could greatly determine the device performance by tuning the crystallinity of components in ternary systems.
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spelling pubmed-71410742020-04-09 Significantly Enhanced Molecular Stacking in Ternary Bulk Heterojunctions Enabled by an Appropriate Side Group on Donor Polymer Jiang, Huanxiang Li, Xiaoming Wang, Huan Ren, Zhitao Zheng, Nan Wang, Xunchang Li, Yonghai Chen, Weichao Yang, Renqiang Adv Sci (Weinh) Full Papers Ternary strategy is a promising approach to broaden the photoresponse of polymer solar cells (PSCs) by adopting combinatory photoactive blends. However, it could lead to a more complicated situation in manipulating the bulk morphology. Achieving an ideal morphology that enhances the charge transport and light absorption simultaneously is an essential avenue to promote the device performance. Herein, two polymers with different lengths of side groups (P1 is based on phenyl side group and P2 is based on biphenyl side group) are adopted in the dual‐acceptor ternary systems to evaluate the relationship between conjugated side group and crystalline behavior in the ternary system. The P1 ternary system delivers a greatly improved power conversion efficiency (PCE) of 13.06%, which could be attributed to the intense and broad photoresponse and improved charge transport originating from the improved crystallinity. Inversely, the P2 ternary device only exhibits a poor PCE of 8.97%, where the decreased device performance could mainly be ascribed to the disturbed molecular stacking of the components originating from the overlong conjugated side group. The results demonstrate a conjugated side group could greatly determine the device performance by tuning the crystallinity of components in ternary systems. John Wiley and Sons Inc. 2020-02-16 /pmc/articles/PMC7141074/ /pubmed/32274321 http://dx.doi.org/10.1002/advs.201903455 Text en © 2020 The Authors. Published by WILEY‐VCH Verlag GmbH & Co. KGaA, Weinheim This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Full Papers
Jiang, Huanxiang
Li, Xiaoming
Wang, Huan
Ren, Zhitao
Zheng, Nan
Wang, Xunchang
Li, Yonghai
Chen, Weichao
Yang, Renqiang
Significantly Enhanced Molecular Stacking in Ternary Bulk Heterojunctions Enabled by an Appropriate Side Group on Donor Polymer
title Significantly Enhanced Molecular Stacking in Ternary Bulk Heterojunctions Enabled by an Appropriate Side Group on Donor Polymer
title_full Significantly Enhanced Molecular Stacking in Ternary Bulk Heterojunctions Enabled by an Appropriate Side Group on Donor Polymer
title_fullStr Significantly Enhanced Molecular Stacking in Ternary Bulk Heterojunctions Enabled by an Appropriate Side Group on Donor Polymer
title_full_unstemmed Significantly Enhanced Molecular Stacking in Ternary Bulk Heterojunctions Enabled by an Appropriate Side Group on Donor Polymer
title_short Significantly Enhanced Molecular Stacking in Ternary Bulk Heterojunctions Enabled by an Appropriate Side Group on Donor Polymer
title_sort significantly enhanced molecular stacking in ternary bulk heterojunctions enabled by an appropriate side group on donor polymer
topic Full Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7141074/
https://www.ncbi.nlm.nih.gov/pubmed/32274321
http://dx.doi.org/10.1002/advs.201903455
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