共聚物
材料科学
能量转换效率
聚合物太阳能电池
光伏系统
聚合物
透射率
化学工程
富勒烯
接受者
高分子化学
光电子学
有机化学
复合材料
化学
工程类
物理
生物
凝聚态物理
生态学
作者
Xiaohua Zhai,Xiangkun Wang,Kun Zhu,Gao Chien,He Yan,Liangmin Yu,Mingliang Sun
标识
DOI:10.1016/j.dyepig.2021.109680
摘要
A lot of binary copolymers have been designed and synthesized for non-fullerene polymer solar cells (PSCs). However, some binary donor-acceptor copolymers exhibited unsatisfactory optical absorption and photovoltaic performance, which are based on 2D-conjugated bithienyl-benzodithiophene (BDTT) and fluorobenzotriazole. Herein, we employed random copolymerization approach to construct terpolymers (named as J28, J55, J82), which outperform binary copolymers in non-fullerene PSCs. Non-fullerene PSCs based on J55: ITIC (1.0:1.0) without any additive (DIO) demonstrate a VOC of 0.83 V, a JSC of 17.23 mA cm−2, a FF of 63.67% and a PCE of 9.19% (a PCE of 5.85% for J52:ITIC, 1.0:1.0; a PCE of 8.16% for J60:ITIC, 1.0:1.0). Semitransparent polymer solar cells (ST-PSCs) based on J55:ITIC showed a VOC of 0.84 V, a JSC of 15.60 mA cm−2, a FF of 51.19%, a PCE of 6.73% with an AVT of 22.06%. This work demonstrates that fluorobenzotriazole and BDTT with branched alkyl and branched alkylthio based terpolymers could have higher photovoltaic performance via random copolymer approach and also meet the balance of two key parameters of power conversion efficiencies and average visible transmittance in ST-PSCs.
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