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首页> 外文期刊>RSC Advances >New insights into electrolyte-component biased and transfer- and transport-limited charge recombination in dye-sensitized solar cells
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New insights into electrolyte-component biased and transfer- and transport-limited charge recombination in dye-sensitized solar cells

机译:染料敏化太阳能电池中电解质组分的偏向以及迁移和迁移受限的电荷复合的新见解

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We carried out a time-resolved charge extraction (TRCE) study on the charge recombination dynamics of open-circuit dye-sensitized solar cells (DSSCs) by examining the temporal evolution of electron density with varying the concentration of the electrolyte component tert-butylpyridine (TBP). The charge recombination dynamics extracted from TRCE results exhibit distinctly different temporal behavior depending on the photovoltage or electron density. We proposed a theoretical model of electron density dependent charge recombination, which unifies the transport- and transfer-limited charge recombination mechanisms. This model, as rationalized by transient photovoltage (TPV) kinetics, can account well for the TRCE results. The relevance between electron transport and charge transfer in the recombination process was unraveled, and the electron density dependent pathway of charge recombination was elucidated.
机译:我们通过研究电子密度随电解质成分叔丁基吡啶浓度的变化随时间的变化,对开路染料敏化太阳能电池(DSSC)的电荷重组动力学进行了时间分辨电荷提取(TRCE)研究。 TBP)。从TRCE结果中提取的电荷复合动力学表现出明显不同的时间行为,具体取决于光电压或电子密度。我们提出了电子密度依赖性电荷重组的理论模型,该模型统一了传输受限和转移受限的电荷重组机制。通过瞬态光电压(TPV)动力学合理化的该模型可以很好地说明TRCE的结果。阐明了重组过程中电子传输与电荷转移之间的相关性,并阐明了电子密度依赖的电荷重组途径。

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