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Effect of Donors on Photophysical, Electrochemical and Photovoltaic Properties of Benzimidazole-Branched Dyes

机译:供体对苯唑分支染料的光学,电化学和光伏性能的影响

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摘要

A series of benzimidazole-branched organic dyes containing different donors such as carbazole or phenothiazine at C4 and C7 positions of benzimidazole, bithiophene linker and cyanoacrylic acid acceptor are reported. Incorporation of donors increased the molar extinction coefficient of the intramolecular charge transfer absorption peak and contributed to the enhanced photocurrent generation than the control dye without donors. The favourable properties of the new dyes are attributed to the suitable HOMO and LUMO energy levels which facilitated dye regeneration and electron injection from the excited state of the dyes into the conduction band of TiO2. The dye-sensitized solar cells fabricated using the dyes possessing phenothiazine-based donor yielded better efficiency than the dyes containing carbazole donor. It is attributed to the effective retardation of electron recombination resulting from the non-planar molecular geometry of the former. These results suggest that opportunities exist for the improvement of benzimidazole-based organic dyes.
机译:报道了一系列含有不同供体的苯咪唑分支有机染料,例如在C4和苯唑唑的C7位置,苯并咪唑的C7位置,Bithiophene接头和氰基丙烯酸受体。供体的掺入增加了分子电荷转移吸收峰的摩尔灭绝系数,并与没有供体的对照染料相比有助于增强的光电流产生。新染料的有利特性归因于合适的均能和Lumo能量水平,这些能量促进了染料的染料再生和电子注射,从染料激发态到TIO2的传导带中。与含有甲壳虫供体的染料相比,使用具有苯噻嗪供体的染料制造的染料敏化太阳能电池提高了效率。它归因于前者非平面分子几何形状产生的电子重组的有效延迟。这些结果表明,有机会改善基于苯咪唑的有机染料。

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