Non-fullerene acceptor pre-aggregates enable high efficiency pseudo-bulk heterojunction organic solar cells

被引:0
|
作者
Donghui Li
Chuanhang Guo
Xue Zhang
Baocai Du
Cong Yu
Pang Wang
Shili Cheng
Liang Wang
Jinlong Cai
Hui Wang
Dan Liu
Huifeng Yao
Yanming Sun
Jianhui Hou
Tao Wang
机构
[1] Wuhan University of Technology,School of Materials Science and Engineering
[2] Chinese Academy of Sciences,State Key Laboratory of Polymer Physics and Chemistry, Beijing National Laboratory for Molecular Sciences, CAS Research/Education Center for Excellence in Molecular Sciences, Institute of Chemistry
[3] University of Chinese Academy of Sciences,School of Chemistry
[4] Beihang University,undefined
来源
Science China Chemistry | 2022年 / 65卷
关键词
non-fullerene acceptors; pre-aggregate; pseudo-bulk heterojunction; organic solar cells;
D O I
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学科分类号
摘要
Pseudo-bulk heterojunction (BHJ) fabricated by sequential casting of donor and acceptor layers has been recently demonstrated a superior structure to prepare organic solar cells (OSCs) with enhanced efficiency compared to the conventional BHJ OSCs cast from a common solution of donor and acceptor. However, molecular diffusion and aggregation within the pseudo-BHJ layer bring great challenges to fully realize the advantage of pseudo-BHJ structure. Herein, a solution-incubated pre-aggregation strategy is employed to tune the nanoscale aggregates of non-fullerene acceptor (NFA) BTP-eC11 and N3 to substantially enhance device power-conversion efficiency (PCE). NFA pre-aggregates are incubated in solutions via aging or adding anti-solvent, and then sequentially cast onto D18 fibrillar network, which then penetrate to form a pseudo-BHJ structure with appropriate domain sizes to ensure superior charge mobilities. While the conventional pseudo-BHJ OSCs obtain inferior PCEs below 17% compared with normal BHJ OSCs, NFA pre-aggregates help to achieve remarkable PCEs of 17.7% and 17.5% for D18/BTP-eC11 and D18/N3 pseudo-BHJ OSCs. This work demonstrates that the solution-incubated nanoscale pre-aggregation is an efficient approach to regulate molecular diffusion and aggregation to guarantee high performance pseudo-BHJ OSCs. [graphic not available: see fulltext]
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页码:373 / 381
页数:8
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