结晶度
有机太阳能电池
烷基
材料科学
接受者
涂层
化学工程
高分子化学
纳米技术
有机化学
聚合物
化学
复合材料
物理
工程类
凝聚态物理
作者
Hairui Bai,Ruijie Ma,Wenyan Su,Top Archie Dela Peña,Tengfei Li,Lingxiao Tang,Jie Yang,Bin Hu,Yilin Wang,Zhaozhao Bi,Yueling Su,Qi Wei,Qiang Wu,Yuwei Duan,Yuxiang Li,Jiaying Wu,Zicheng Ding,Xunfan Liao,Yinjuan Huang,Chao Gao
出处
期刊:Nano-micro Letters
[Springer Science+Business Media]
日期:2023-11-02
卷期号:15 (1)
被引量:56
标识
DOI:10.1007/s40820-023-01208-0
摘要
Abstract Power-conversion-efficiencies (PCEs) of organic solar cells (OSCs) in laboratory, normally processed by spin-coating technology with toxic halogenated solvents, have reached over 19%. However, there is usually a marked PCE drop when the blade-coating and/or green-solvents toward large-scale printing are used instead, which hampers the practical development of OSCs. Here, a new series of N -alkyl-tailored small molecule acceptors named YR-SeNF with a same molecular main backbone are developed by combining selenium-fused central-core and naphthalene-fused end-group. Thanks to the N -alkyl engineering, NIR-absorbing YR-SeNF series show different crystallinity, packing patterns, and miscibility with polymeric donor. The studies exhibit that the molecular packing, crystallinity, and vertical distribution of active layer morphologies are well optimized by introducing newly designed guest acceptor associated with tailored N -alkyl chains, providing the improved charge transfer dynamics and stability for the PM6:L8-BO:YR-SeNF-based OSCs. As a result, a record-high PCE approaching 19% is achieved in the blade-coating OSCs fabricated from a green-solvent o -xylene with high-boiling point. Notably, ternary OSCs offer robust operating stability under maximum-power-point tracking and well-keep > 80% of the initial PCEs for even over 400 h. Our alkyl-tailored guest acceptor strategy provides a unique approach to develop green-solvent and blade-coating processed high-efficiency and operating stable OSCs, which paves a way for industrial development.
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