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Synthesis and Mechanistic Studies of Organic Chromophores with Different Energy Levels for p-Type Dye-Sensitized Solar Cells

机译:p型染料敏化太阳能电池不同能级的有机发色团的合成及机理研究

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摘要

A series of donor-π-acceptor dyes with different electron-withdrawing groups were designed and synthesized for p-type dye-sensitized solar cells. The modification of dye structures shows significant influence on the photophysical, electrochemical, and photovoltaic performance of the dyes. DSSCs based on these dyes show maximum 63% and minimum 6% of incident monochromatic photon-to-current conversion efficiencies. The two dyes with the highest (P1) and lowest (P3) efficiencies were studied by femtosecond transient absorption spectroscopy, which shows a fast injection rate of more than (250 fs)~(-1) for both dyes. Such fast injection corresponds to more than 90% injection efficiency. The photoinduced absorption spectroscopy study of sensitized NiO films in the presence of electrolyte showed poor regeneration of P3 due to an insufficient driving force. This, together with aggregation of the dye on the NiO film, explained the poor solar cell performance.
机译:设计并合成了具有不同吸电子基团的一系列供体-π-受体染料用于p型染料敏化太阳能电池。染料结构的改性显示出对染料的光物理,电化学和光伏性能的重大影响。基于这些染料的DSSC表现出入射单色光子至电流转换效率的最大63%和最小6%。飞秒瞬态吸收光谱法研究了效率最高(P1)和最低(P3)的两种染料,这两种染料的快速注入速率均超过(250 fs)〜(-1)。这样的快速喷射相当于超过90%的喷射效率。在电解质存在下敏化的NiO薄膜的光致吸收光谱研究表明,由于驱动力不足,P3再生较差。这与染料在NiO膜上的聚集一起解释了太阳能电池性能差的原因。

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