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稠环电子受体光伏材料.doc

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稠环电子受体光伏材料.doc

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稠环电子受体光伏材料.doc

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文档介绍:稠环电子受体光伏材料
代水星占肖卫
北京大学工学院
基于非富勒烯受体的有机太阳能电池是化学和材料领域的热点前沿之一,“稠环电子受体(FREA) ”这一新概念,构建了高性能稠环电子受体新体系,,,,并展望稠环电子受体的未来发展.
关键词:
稠环电了受体;非富勒烯受体;有机太阳能电池;
占肖卫,男,1967年8月生,北京大学工学院教授、生导师、材料系副系主任、^1990年,
〜1998年,浙江大学高分子系. 1998〜2000年,中国科学院化学研究所后,其中,1999年,^2002年,^2003年,~2006年,~2012年,,“百人计划”,〈Journal of Materials Chemistry C>副主编,-mai l: ******@pku.
收稿曰期:2017-08-03
基金:国家自然科学基金(基金号91433114, 21673011,21734001)资助项目
Fused-ring Electron Acceptors anic Solar Cells
Shui-xing Dai Xiao-wei Zhan
College of Engineering, Peking University;
Abstract:
anic solar cell (OPV) is one of the hottest frontiers in chemistry and materials science. China has been leading this hot frontier, and Chinese researchers have made great contribution to this research field. We proposed a novel concept — fused~ring electron acceptor (FRRA), established a brand-new, high- c acceptor system, and invented star molecule IT1C. These P’REAs show some advantages: (1) they have high electron mobility similar to those of fullerenes; (2) they exhibit strong and broad absorption, especially in the 700 - 1000 nm range, and can match with wide_bandgap donor materials to plementary absorption; (3) their energy level can be tuned and thus they match with various high-performance electron donors; (4) their crystallinity and film morphology can be tuned; (5) their synthesis is easy to scale up. Our original and pioneering work has received extensive attention. FREAs are mercial available. Many wel 1-known research groups across the world have already utilized these FREAs to fabricate high