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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Electric field dependent photocurrent generation in a thin-film organic photovoltaic device with a [70]fullerene-benzodifuranone dyad
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Electric field dependent photocurrent generation in a thin-film organic photovoltaic device with a [70]fullerene-benzodifuranone dyad

机译:带有[70]富勒烯-苯并二呋喃酮二聚体的薄膜有机光伏器件中与电场有关的光电流产生

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摘要

A [70]fullerene-benzodifuranone acceptor dyad synthesized by a Ag~+-mediated coupling reaction was used to construct a thin-film organic solar cell. The fullerene and the benzodifuranone dye in the dyad have close-lying LUMO levels in the range of 3.7-3.9 eV, so that energy transfer from the dye to the fullerene can take place. A p-n heterojunction photovoltaic device consisting of a tetrabenzoporphyrin and a [70]fullerene-benzodifuranone dyad showed a weak but discernible contribution from light absorption of the dyad to the photocurrent under both a positive and a negative effective bias. These results indicate that the benzodifuranone moiety attached to the acceptor contributes to light-harvesting by energy transfer.
机译:通过Ag〜+介导的偶联反应合成的[70]富勒烯-苯并二呋喃酮受体二聚体被用于构建薄膜有机太阳能电池。二倍体中的富勒烯和苯并二呋喃酮染料具有接近的LUMO水平,范围为3.7-3.9 eV,因此可以发生从染料到富勒烯的能量转移。由四苯并卟啉和[70]富勒烯-苯并二呋喃酮二元组组成的p-n异质结光伏器件在有效和负有效偏压下均显示出二元组光吸收对光电流的弱但可辨别的贡献。这些结果表明,与受体连接的苯并二呋喃酮部分通过能量转移有助于光捕获。

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