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非富勒烯电子受体多尺度分子聚集体
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作者 李伟 陈宸 +1 位作者 刘丹 王涛 《高等学校化学学报》 SCIE EI CAS CSCD 北大核心 2023年第9期97-109,共13页
有机太阳能电池的光活性层由p型电子供体和n型电子受体构成.这些有机半导体分子的共轭结构和杂元素使其分子间存在强非共价键作用,易于自组装形成分子聚集体,展现出与单个分子截然不同的光电性能,更决定了太阳能电池光吸收、激子解离和... 有机太阳能电池的光活性层由p型电子供体和n型电子受体构成.这些有机半导体分子的共轭结构和杂元素使其分子间存在强非共价键作用,易于自组装形成分子聚集体,展现出与单个分子截然不同的光电性能,更决定了太阳能电池光吸收、激子解离和电荷传输等光电转换过程.本文介绍了n型非富勒烯电子受体材料在分子及微纳尺度下的多级聚集体形态,包括强结晶性非富勒烯受体的堆叠、成核、结晶机制与抑制手段,以及弱有序非富勒烯受体无规聚集及有序性提升策略.最后,重点讨论了非富勒烯电子受体纤维化的研究进展及关键技术,并对未来高性能非富勒烯电子受体的结构设计和聚集调控进行了总结和展望. 展开更多
关键词 有机太阳能电池 非富勒烯电子受体 分子聚集体 光电特性
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A new chlorinated non-fullerene acceptor based organic photovoltaic cells over 12%efficiency 被引量:5
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作者 CAO Rui CHEN Yu +8 位作者 CAI Fang-fang CHEN Hong-gang LIU Wei GUAN Hui-lan WEI Qing-ya LI Jing CHANG Qin LI Zhe ZOU Ying-ping 《Journal of Central South University》 SCIE EI CAS CSCD 2020年第12期3581-3593,共13页
The method to fluorinate the terminal group has achieved remarkable success and been widely used to fine-tune the intrinsic properties of organic acceptor materials.Referring to chlorination,however,it gets less atten... The method to fluorinate the terminal group has achieved remarkable success and been widely used to fine-tune the intrinsic properties of organic acceptor materials.Referring to chlorination,however,it gets less attention and remains ambiguous effect on organic photovoltaic(OPV)cells.Herein,a new non-fullerene acceptor named Y19 was reported with benzotriazole as the electron-deficient core and 2Cl-ICs as the strong electron-withdrawing end groups.Y19 exhibits a wide film absorption band from 600 nm to 948 nm and low LUMO(the lowest unoccupied molecular orbital)energy level of−3.95 eV.Photovoltaic devices based on PM6:Y19 show high-power conversion efficiency(PCE)of 12.76%with high open-circuit voltage(Voc)of 0.84 V,short-circuit current density(Jsc)of 22.38 mA/cm2 and fill factor(FF)of 68.18%.Broad external quantum efficiency(EQE)response of over 60%in the range of 480−860 nm can be obtained.This study demonstrates that chlorination,as a low-cost molecular design strategy,has its own superiorities to improve device performance and promote the potential application in OPV. 展开更多
关键词 non-fullerene acceptor CHLORINATION electron-deficient core device performance
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