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A New Nonfullerene Acceptor with Near Infrared Absorption for High Performance Ternary‐Blend Organic Solar Cells with Efficiency over 13%

A new acceptor–donor–acceptor (A–D–A) type nonfullerene acceptor, 3TT‐FIC, which has three fused thieno[3,2‐b]thiophene as the central core and difluoro substituted indanone as the end groups, is designed and synthesized. 3TT‐FIC exhibits broad and strong absorption with extended onset absorption to...

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Autores principales: Gao, Huan‐Huan, Sun, Yanna, Wan, Xiangjian, Ke, Xin, Feng, Huanran, Kan, Bin, Wang, Yanbo, Zhang, Yamin, Li, Chenxi, Chen, Yongsheng
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6010751/
https://www.ncbi.nlm.nih.gov/pubmed/29938192
http://dx.doi.org/10.1002/advs.201800307
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author Gao, Huan‐Huan
Sun, Yanna
Wan, Xiangjian
Ke, Xin
Feng, Huanran
Kan, Bin
Wang, Yanbo
Zhang, Yamin
Li, Chenxi
Chen, Yongsheng
author_facet Gao, Huan‐Huan
Sun, Yanna
Wan, Xiangjian
Ke, Xin
Feng, Huanran
Kan, Bin
Wang, Yanbo
Zhang, Yamin
Li, Chenxi
Chen, Yongsheng
author_sort Gao, Huan‐Huan
collection PubMed
description A new acceptor–donor–acceptor (A–D–A) type nonfullerene acceptor, 3TT‐FIC, which has three fused thieno[3,2‐b]thiophene as the central core and difluoro substituted indanone as the end groups, is designed and synthesized. 3TT‐FIC exhibits broad and strong absorption with extended onset absorption to 995 nm and a low optical bandgap of 1.25 eV. The binary device based on 3TT‐FIC and the polymer PTB7‐Th exhibits a power conversion efficiency (PCE) of 12.21% with a high short circuit current density (   J (sc)) of 25.89 mA cm(−2). To fine‐tune the morphology and make full use of the visible region sunlight, phenyl‐C(71)‐butyricacid‐methyl ester (PC(71)BM) is used as the third component to fabricate ternary devices. In contrast to the binary devices, the ternary blend organic solar cells show significantly enhanced EQE ranging from 300 to 700 nm and thus an improved  J (sc) with a high value of 27.73 mA cm(−2). A high PCE with a value of 13.54% is achieved for the ternary devices, which is one of the highest efficiencies in single junction organic solar cells reported to date. The results provide valuable insight for the ternary devices in which the external quantum efficiency (EQE) induced by the third component is evidently observed and directly contributed to the enhancement of the device efficiency.
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spelling pubmed-60107512018-06-22 A New Nonfullerene Acceptor with Near Infrared Absorption for High Performance Ternary‐Blend Organic Solar Cells with Efficiency over 13% Gao, Huan‐Huan Sun, Yanna Wan, Xiangjian Ke, Xin Feng, Huanran Kan, Bin Wang, Yanbo Zhang, Yamin Li, Chenxi Chen, Yongsheng Adv Sci (Weinh) Communications A new acceptor–donor–acceptor (A–D–A) type nonfullerene acceptor, 3TT‐FIC, which has three fused thieno[3,2‐b]thiophene as the central core and difluoro substituted indanone as the end groups, is designed and synthesized. 3TT‐FIC exhibits broad and strong absorption with extended onset absorption to 995 nm and a low optical bandgap of 1.25 eV. The binary device based on 3TT‐FIC and the polymer PTB7‐Th exhibits a power conversion efficiency (PCE) of 12.21% with a high short circuit current density (   J (sc)) of 25.89 mA cm(−2). To fine‐tune the morphology and make full use of the visible region sunlight, phenyl‐C(71)‐butyricacid‐methyl ester (PC(71)BM) is used as the third component to fabricate ternary devices. In contrast to the binary devices, the ternary blend organic solar cells show significantly enhanced EQE ranging from 300 to 700 nm and thus an improved  J (sc) with a high value of 27.73 mA cm(−2). A high PCE with a value of 13.54% is achieved for the ternary devices, which is one of the highest efficiencies in single junction organic solar cells reported to date. The results provide valuable insight for the ternary devices in which the external quantum efficiency (EQE) induced by the third component is evidently observed and directly contributed to the enhancement of the device efficiency. John Wiley and Sons Inc. 2018-03-25 /pmc/articles/PMC6010751/ /pubmed/29938192 http://dx.doi.org/10.1002/advs.201800307 Text en © 2018 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 Communications
Gao, Huan‐Huan
Sun, Yanna
Wan, Xiangjian
Ke, Xin
Feng, Huanran
Kan, Bin
Wang, Yanbo
Zhang, Yamin
Li, Chenxi
Chen, Yongsheng
A New Nonfullerene Acceptor with Near Infrared Absorption for High Performance Ternary‐Blend Organic Solar Cells with Efficiency over 13%
title A New Nonfullerene Acceptor with Near Infrared Absorption for High Performance Ternary‐Blend Organic Solar Cells with Efficiency over 13%
title_full A New Nonfullerene Acceptor with Near Infrared Absorption for High Performance Ternary‐Blend Organic Solar Cells with Efficiency over 13%
title_fullStr A New Nonfullerene Acceptor with Near Infrared Absorption for High Performance Ternary‐Blend Organic Solar Cells with Efficiency over 13%
title_full_unstemmed A New Nonfullerene Acceptor with Near Infrared Absorption for High Performance Ternary‐Blend Organic Solar Cells with Efficiency over 13%
title_short A New Nonfullerene Acceptor with Near Infrared Absorption for High Performance Ternary‐Blend Organic Solar Cells with Efficiency over 13%
title_sort new nonfullerene acceptor with near infrared absorption for high performance ternary‐blend organic solar cells with efficiency over 13%
topic Communications
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6010751/
https://www.ncbi.nlm.nih.gov/pubmed/29938192
http://dx.doi.org/10.1002/advs.201800307
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