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Development of strongly absorbing S,N-heterohexacene-based donor materials for efficient vacuum-processed organic solar cells

机译:开发用于高效真空处理的有机太阳能电池的强吸收性S,N-异己烯基供体材料

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A series of terminal dicyanovinylene (DCV)-substituted S,N-heterohexacenes with variable lengths of alkyl chains were synthesized and characterized for application in vacuum-processed planar-heterojunction and bulk-heterojunction organic solar cells. X-ray single crystal analysis of hexyl-substituted derivative 4 revealed that the molecules are ordered in columns via pi-pi-stacking. While the influence of the alkyl chain length is negligible on the optoelectronic properties, an odd-even effect was observed with respect to the photovoltaic performance. Vacuum-processed planar-heterojunction organic solar cells prepared using DCV-substituted S,N-heterohexacenes as electron donors and C-60 as the acceptor showed extraordinary high efficiencies of up to 5.0%. Bulk-heterojunction solar cells incorporating pentyl derivative 3 and C-60 led to excellent power conversion efficiencies of up to 7.1% exceeding those of previously reported S, N-heteropentacenes.
机译:合成了一系列末端可变长度的烷基链的双氰基亚乙烯基(DCV)取代的S,N-异六烯,并表征了其在真空处理的平面异质结和本体异质结有机太阳能电池中的应用。己基取代的衍生物4的X射线单晶分析表明,这些分子通过pi-pi堆积按列排列。尽管烷基链长对光电性能的影响可以忽略,但在光电性能方面观察到了奇偶效应。使用DCV取代的S,N-异六十六烷作为电子给体并使用C-60作为受体制备的真空处理的平面异质结有机太阳能电池显示出高达5.0%的超高效率。结合了戊基衍生物3和C-60的体-异质结太阳能电池的功率转换效率高达7.1%,超过了先前报道的S,N-异戊烷类化合物。

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