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Branched Alkoxy Side Chain Enables High-Performance Non-Fullerene Acceptors with High Open-Circuit Voltage and Highly Ordered Molecular Packing

  • Jiaen Liang
  • , Mingao Pan
  • , Zhen Wang
  • , Jianquan Zhang
  • , Fujin Bai
  • , Ruijie Ma
  • , Lu Ding
  • , Yuzhong Chen
  • , Xiaojun Li*
  • , Harald Ade*
  • , He Yan
  • *此作品的通讯作者

科研成果: 期刊稿件文章同行评审

摘要

The linear alkyl chains on the β-position of the thieno[3,2-b]thiophene units of Y6 play a critical role in determining the molecular properties of non-fullerene acceptors (NFAs) and device performance of the corresponding organic solar cells (OSCs). This linear chain can be substituted with either alkoxy or branched alkyl side chains, which are two common strategies to modify the property of Y6-type molecules. In this paper, we use a combination of these two strategies by using branched alkoxy side chains to modify Y6 and develop a new NFA named Y6-O2BO. Interestingly, this branched alkoxy substitution introduces different effects from previously used branched alkyl or linear alkoxy modifications. More ordered molecular packing and enhanced crystallinity are observed for Y6-O2BO-based blend films, which should be beneficial for charge carrier transportation. The Y6-O2BO-based device exhibits a much enhanced open-circuit voltage (VOC) compared to those based on linear alkoxy or branched alkyl chain substituted molecules. By using a mixture of Y6 and Y6-O2BO, the VOCof ternary devices can be linearly tuned between 0.84 and 0.96 V based on the ratio of these two acceptors. As a result, the optimal OSC yields an improved VOCof 0.88 V and a high FF of 0.79, leading to a maximum efficiency of 17.5%. This reveals the effectiveness of branched alkoxy chains in elevating VOCand further optimizing the performance of OSCs.

源语言英语
页(从-至)2059-2068
页数10
期刊Chemistry of Materials
34
5
DOI
出版状态已出版 - 8 3月 2022
已对外发布

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