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基于立体异构体非富勒烯受体的有机太阳能电池。

Stereoisomeric Non-Fullerene Acceptors-Based Organic Solar Cells.

作者信息

Liu Lixuan, Yan Yangjun, Zhao Shengda, Wang Tong, Zhang Wenqing, Zhang Jianqi, Hao Xiaotao, Zhang Yajie, Zhang Xinghua, Wei Zhixiang

机构信息

CAS Key Laboratory of Nanosystem and Hierarchical Fabrication, National Center for Nanoscience and Technology, Beijing, 100190, China.

School of Future Technology, University of Chinese Academy of Sciences (UCAS), Beijing, 100049, China.

出版信息

Small. 2024 Jan;20(3):e2305638. doi: 10.1002/smll.202305638. Epub 2023 Sep 12.

Abstract

Chiral alkyl chains are ubiquitously observed in organic semiconductor materials and can regulate solution processability and active layer morphology, but the effect of stereoisomers on photovoltaic performance has rarely been investigated. For the racemic Y-type acceptors widely used in organic solar cells, it remains unknown if the individual chiral molecules separate into the conglomerate phase or if racemic phase prevails. Here, the photovoltaic performance of enantiomerically pure Y6 derivatives, (S,S)/(R,R)-BTP-4F, and their chiral mixtures are compared. It is found that (S,S) and (R,R)-BTP-4F molecule in the racemic mixtures tends to interact with its enantiomer. The racemic mixtures enable efficient light harvesting, fast hole transfer, and long polaron lifetime, which is conducive to charge generation and suppresses the recombination losses. Moreover, abundant charge diffusion pathways provided by the racemate contribute to efficient charge transport. As a result, the racemate system maximizes the power output and minimizes losses, leading to a higher efficiency of 18.16% and a reduced energy loss of 0.549 eV, as compared to the enantiomerically pure molecules. This study demonstrates that the chirality of non-fullerene acceptors should receive more attention and be designed rationally to enhance the efficiency of organic solar cells.

摘要

手性烷基链在有机半导体材料中普遍存在,并且可以调节溶液可加工性和活性层形态,但立体异构体对光伏性能的影响鲜有研究。对于有机太阳能电池中广泛使用的外消旋Y型受体,单个手性分子是否会分离成聚集体相或者外消旋相是否占主导地位仍不清楚。在此,比较了对映体纯的Y6衍生物、(S,S)/(R,R)-BTP-4F及其手性混合物的光伏性能。研究发现,外消旋混合物中的(S,S)和(R,R)-BTP-4F分子倾向于与其对映体相互作用。外消旋混合物能够实现高效的光捕获、快速的空穴转移和较长的极化子寿命,这有利于电荷产生并抑制复合损失。此外,外消旋体提供的丰富电荷扩散途径有助于高效的电荷传输。结果,与对映体纯分子相比,外消旋体系统使功率输出最大化并使损失最小化,从而实现了18.16%的更高效率和0.549 eV的更低能量损失。这项研究表明,非富勒烯受体的手性应受到更多关注并进行合理设计,以提高有机太阳能电池的效率。

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