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Band-gap tuning of pendant polymers for organic light-emitting devices and photovoltaic applications

机译:用于有机发光器件和光伏应用的侧基聚合物的带隙调节

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摘要

The preparation of a series of novel polymers comprising pendant electro-active "push-pull" chro-mophores and their performance in solution-processed organic electronic devices is described. The design of the electro-active pendant chromophores was based on the well-known motif of cyano-substituted poly(p-phenylenevinylene). Optical band-gap engineering within this series of polymers was achieved by varying the conjugation length and the electron donor/acceptor functionalities of the pendant chromophores. The introduction of a cyanoimine group into the electro-active pendant module resulted in a marked narrowing of the optical band-gap compared with the other electro-active pendant chromophores investigated in this work. Bulk heterojunction solar cell devices comprising these polymers were prepared by solution processing blends of each polymer with [6,6]-phenyl-C_(61) -butyric acid methyl ester, and their performance was evaluated by measuring power conversion efficiencies. The best-performing solar cell in this series exhibited a power conversion efficiency of 0.29% and a maximum incident photon-to-current conversion efficiency of 22% and was produced using the polymer in which the electro-active chromophore comprised the cyanoimine group.
机译:描述了一系列包含侧向电活性“推挽”变色发光体的新型聚合物的制备及其在溶液处理的有机电子器件中的性能。电活性侧基生色团的设计基于氰基取代的聚对亚苯基亚乙烯基的众所周知的基序。通过改变共轭长度和侧基生色团的电子给体/受体官能度,可以实现这一系列聚合物的光学带隙工程。与本研究中研究的其他电活性侧基生色团相比,向电活性侧基模块中引入氰胺基团导致光学带隙显着缩小。通过将每种聚合物与[6,6]-苯基-C_(61)-丁酸甲酯进行共混溶液加工,可以制备出包含这些聚合物的本体异质结太阳能电池器件,并通过测量功率转换效率来评估其性能。该系列中性能最佳的太阳能电池表现出0.29%的功率转换效率和22%的最大入射光子-电流转换效率,并且是使用其中电活性发色团包含氰胺基的聚合物生产的。

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