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用于高性能、无需退火的有机太阳能电池的γ-酯官能化1,1-二氰基亚甲基-3-茚酮封端非富勒烯受体

γ-Ester-Functionalized 1,1-Dicyanomethylene-3-indanone End-Capped Nonfullerene Acceptors for High-Performance, Annealing-Free Organic Solar Cells.

作者信息

Lee Seunglok, Park Geunhyung, Jeong Mingyu, Lee Byongkyu, Jeong Seonghun, Park Jeewon, Cho Yongjoon, Noh Seung Man, Yang Changduk

机构信息

School of Energy and Chemical Engineering, Perovtronics Research Center, Low Dimensional Carbon Materials Center, Ulsan National Institute of Science and Technology (UNIST), 50 UNIST-gil, Ulju-gun, Ulsan 44919, South Korea.

Research Center for Green Fine Chemicals, Korea Research Institute of Chemical Technology, Ulsan 44412, Republic of Korea.

出版信息

ACS Appl Mater Interfaces. 2022 Jul 18. doi: 10.1021/acsami.2c08370.

DOI:10.1021/acsami.2c08370
PMID:35849798
Abstract

Modifying the end-capping groups in nonfullerene acceptors (NFAs) is an effective strategy for modulating their properties and that of the entire NFAs. This study reports the synthesis of a novel γ-ester-functionalized IC end-capping group (IC-γe) and its incorporation into the benzothiadiazole-fused central core, yielding isomer-free IC-γe end-capped NFAs, such as Y-IC-γe, Y-FIC-γe, and Y-ClIC-γe. The resultant NFAs exhibited similar absorption profiles but upshifted the lowest unoccupied molecular orbital energy level compared with those of the ester-free analogues, such as Y6 and Y7. Without thermal annealing, an excellent power conversion efficiency (PCE) of 16.4% is realized in the annealing-free OSC based on Y-FIC-γe with the PM6 donor polymer, which outperforms the OSCs based on Y-IC-γe and Y-ClIC-γe. In addition, the OSCs based on asymmetric Y-FIC-γe and Y-ClIC-γe have higher thermal stability with more than 83% PCE retention at an elevated temperature after 456 h than the symmetric Y-IC-γe case. In this study, we not only establish the structure-property relationship regarding the ester functionality and symmetricity tuning on the NFAs but also diagnose the reasons for the best-performing Y-FIC-γe-based OSCs, providing useful information for a novel high-performing NFA design strategy.

摘要

修饰非富勒烯受体(NFAs)中的封端基团是调节其性质以及整个NFAs性质的有效策略。本研究报道了一种新型γ-酯官能化的IC封端基团(IC-γe)的合成及其并入苯并噻二唑稠合的中心核中,得到无异构体的IC-γe封端的NFAs,如Y-IC-γe、Y-FIC-γe和Y-ClIC-γe。与不含酯的类似物(如Y6和Y7)相比,所得NFAs表现出相似的吸收光谱,但最低未占据分子轨道能级上移。在不进行热退火的情况下,基于Y-FIC-γe与PM6供体聚合物的免退火有机太阳能电池(OSC)实现了16.4%的优异功率转换效率(PCE),其性能优于基于Y-IC-γe和Y-ClIC-γe的OSC。此外,基于不对称Y-FIC-γe和Y-ClIC-γe的OSC具有更高的热稳定性,在456小时后高温下PCE保留率超过83%,优于对称的Y-IC-γe情况。在本研究中,我们不仅建立了关于NFAs上酯官能团和对称性调节的结构-性质关系,还分析了基于Y-FIC-γe的OSC表现最佳的原因,为新型高性能NFA设计策略提供了有用信息。

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