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Regulating the Packing of Non-Fullerene Acceptors via Multiple Noncovalent Interactions for Enhancing the Performance of Organic Solar Cells

机译:通过多种非共价相互作用来调节非富勒烯受体的包装,以提高有机太阳能电池的性能

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摘要

Three noncovalently fused-ring electron acceptors (FOC6-IC, FOC6-FIC, and FOC2C6-2FIC) are synthesized. Single crystals of FOC6-IC and FOC2C6-2FIC are prepared, and structure analyses reveal that the molecular backbone can be planarized via the formation of the intramolecular noncovalent interactions. These acceptor molecules can be packed closely in the solid state via pi-pi stacking and static interactions between the central phenylene unit and the terminal group with a distance of 3.3-3.4 angstrom. Besides, multiple intermolecular noncovalent interactions can be observed in the single crystal structure of the fluorinated acceptor FOC2C6-2FIC, which help increase the crystallinity of acceptors and the charge mobility of the blends. Photovoltaic devices based on FOC2C6-2FIC give a power conversion efficiency of 12.36%, higher than 12.08% for FOC6-FIC and 10.80% for FOC6-IC.
机译:合成三个非共价融合环电子受体(Foc6-IC,Foc6-Fic和Foc2C6-2FIC)。 制备FoC6-IC和Foc2C6-2FIC的单晶,并且结构分析表明,可以通过形成分子内非共价相互作用来平坦化分子骨架。 这些受体分子可以通过PI-PI堆叠和中央亚苯基单元和距离之间的静态相互作用密切地填充,距离距离为3.3-3.4埃。 此外,可以在氟化受体Foc2C6-2FIC的单晶结构中观察到多个分子间非共价相互作用,这有助于增加受体的结晶度和共混物的电荷迁移率。 基于Foc2C6-2的光伏器件,功率转换效率为12.36%,FOC6-FIC的焦点6-FIC的12.08%,FOC6-IC的10.80%。

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