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π-扩展、硒掺入与三聚化:基于苝二酰亚胺低聚物的高效有机太阳能电池的“三位一体”策略

π-Extension, Selenium Incorporation, and Trimerization: "Three in One" for Efficient Perylene Diimide Oligomer-Based Organic Solar Cells.

作者信息

Wang Keke, Xia Ping, Wang Kangwei, You Xiaoxiao, Wu Mingliang, Huang Huaxi, Wu Di, Xia Jianlong

机构信息

School of Chemistry, Chemical Engineering and Life Science , Wuhan University of Technology , No. 122 Luoshi Road , Wuhan 430070 , China.

State Key Laboratory of Advanced Technology for Materials Synthesis and Processing, Center of Smart Materials and Devices , Wuhan University of Technology , No. 122 Luoshi Road , Wuhan 430070 , China.

出版信息

ACS Appl Mater Interfaces. 2020 Feb 26;12(8):9528-9536. doi: 10.1021/acsami.9b21929. Epub 2020 Feb 14.

Abstract

Perylene diimide (PDI) and the vinylene-bridged helical PDI oligomers are versatile building blocks for constructing nonfullerene acceptors (NFAs). In this contribution, a benzene-cored star-shaped NFA, namely, , was designed and synthesized for organic solar cells (OSCs). The NFA with smaller π-conjugated blades, namely, , was synthesized for comparison. Using the commercially available PTB7-Th as the electron donor, the best power conversion efficiency (PCE) of 3.62% was obtained for -based OSCs. However, a much higher PCE of 8.59% was achieved for -based devices owing to the π-extension in the peripheral panels. Moreover, the photovoltaic performance of -based OSCs is also superior to those of the parent NFA TPDI2 (PCE of 7.84%)- and the blade moiety PDI2-Se (PCE of 6.61%)- based ones. Additionally, a remarkable short-circuit current () value of 17.21 mA/cm was obtained for -based OSCs, which is among the highest values reported in PDI-based OSCs. These results argue that the so-called "three in one" molecule design strategy of π-extension, selenium incorporation, and trimerization offers a robust approach to constructing high-performance PDI-based NFAs.

摘要

苝二酰亚胺(PDI)和亚乙烯基桥连的螺旋状PDI低聚物是构建非富勒烯受体(NFAs)的通用结构单元。在本论文中,设计并合成了一种用于有机太阳能电池(OSCs)的苯核星形NFA,即 。合成了具有较小π共轭叶片的NFA,即 用于比较。以市售的PTB7-Th作为电子供体,基于 的OSCs获得了3.62%的最佳功率转换效率(PCE)。然而,由于外围面板中的π扩展,基于 的器件实现了8.59%的更高PCE。此外,基于 的OSCs的光伏性能也优于基于母体NFA TPDI2(PCE为7.84%)和叶片部分PDI2-Se(PCE为6.61%)的OSCs。此外,基于 的OSCs获得了17.21 mA/cm的显著短路电流( )值,这是基于PDI的OSCs中报道的最高 值之一。这些结果表明,所谓的π扩展、硒掺入和三聚化的“三位一体”分子设计策略为构建高性能基于PDI的NFAs提供了一种可靠的方法。

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