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Impact of an electron withdrawing group on the thiophene-fused benzotriazole unit on the photovoltaic performance of the derived polymer solar cells

delete2019-07-01
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Xiu Jiang
王家成 cover
王家成 (Jiacheng Wang)
王玮 (Wei Wang)
杨旸 (Yang Yang)
占肖卫 (Xiaowei Zhan) *
X
Xingguo Chen *
DOI:10.1016/j.dyepig.2019.03.056delete
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Abstract

Abstract

En 中文
In this work, two new donor-acceptor (D-A) copolymers (P32 and P33) for non-fullerene polymer solar cells (PSCs) have been synthesized based on a thiophene-fused benzotriazole (BTAZT) unit and thiophene substituted benzodithiophene (BDTT) unit, in which two different electron-withdrawing groups (i.e., fluorine and ester groups) have been introduced at the side of BTAZT unit, respectively. It is found that P32 with a long alkyl chain ester group shows a more redshifted intramolecular charge transfer absorption, and also exhibits a better complementary absorption spectrum with a small molecular acceptor based on the dithienocyclopentathieno [3,2-b]thiophene core end-capped with 1,1-dicyanomethylene-3-indanone unit (IHIC) than P33. Moreover, P32:IHIC blended film shows higher and more balanced hole/electron charge mobilities as well as better morphologies with more suitable phase separation scale for efficient charge separation and transport than P33:IHIC blended film. Thus, the P32:IHIC based PSC device exhibits the higher power conversion efficiency of 8.35% with higher short-circuit current density (J(SC) = 16.77 mA cm(-2)) and fill factor (FF = 64.89%) compared with the P32:IHIC based PSC device, indicating that the different electron-withdrawing side groups at BTAZT unit exerts a significant influence on the properties of the polymers as well as the photovoltaic performances of the PSCs.
Keywords:
D-A copolymer
Thiophene fused benzotriazole
Quiniod structure
Non-fullerene solar cells
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Dyes and Pigments cover
Dyes and Pigments
IF:
4.2
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1.3W
Citations:
2.9W

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peking university
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11.5W
Papers: 8.6W
Citations: 146
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wuhan university
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Papers: 5.7W
Citations: 70
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