首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >N-phenyl[60]fulleropyrrolidines: alternative acceptor materials to PC61BM for high performance organic photovoltaic cells
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N-phenyl[60]fulleropyrrolidines: alternative acceptor materials to PC61BM for high performance organic photovoltaic cells

机译:N-苯基[60] fulleropyrrolidines:PC61BM的替代受体材料,用于高性能有机光伏电池

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摘要

A series of novel soluble [60]fulleropyrrolidine derivatives bearing relatively simple substituents like [6,6]-phenyl-C-61-butyric acid methyl ester (PC61BM) is synthesized under Prato reaction conditions. The photoabsorption and electrochemical properties of the fulleropyrrolidines are investigated to elucidate their molecular-level electronic properties similar to those of PC61BM. The investigations of the fulleropyrrolidines as electron acceptors based on bulk-heterojunction type organic photovoltaic (OPV) devices fabricated using P3HT as a donor show clear differences in performance depending on the substituents, and the devices based on the N-phenyl[60]fulleropyrrolidine derivatives exhibit good power conversion efficiencies (PCEs) comparable to, or even higher than, that of the standard PC61BM-based device. Finally, the OPV devices based on a low-bandgap donor polymer (PTB7) with the N-phenyl[60]fulleropyrrolidines show high PCEs up to 7.3%, which is the highest class performance among [60]fullerene-based OPV devices, indicating that N-phenyl[60]fulleropyrrolidine derivatives are a promising alternative to PC61BM for OPV acceptor materials.
机译:在普拉托反应条件下,合成了一系列带有相对简单的取代基(如[6,6]-苯基-C-61-丁酸甲酯(PC61BM))的新型可溶性[60] fulleropyrrolidine衍生物。研究了全吡咯烷的光吸收和电化学性质,以阐明其与PC61BM相似的分子水平电子性质。基于以P3HT作为供体的本体-异质结型有机光伏(OPV)器件为基础的全吡咯烷酮作为电子受体的研究表明,取决于取代基的性能以及基于N-苯基[60] fulleropyrrolidine衍生物的器件的性能存在明显差异具有良好的功率转换效率(PCE),可与基于PC61BM的标准器件相媲美甚至更高。最后,基于低带隙供体聚合物(PTB7)和N-苯基[60]富勒吡咯烷的OPV器件显示出高达7.3%的高PCE,这是[60]富勒烯基OPV器件中的最高性能。 N-苯基[60]全吡咯烷衍生物是用于OPV受体材料的PC61BM的有前途的替代品。

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