首页> 外文期刊>Journal of the American Chemical Society >Determination of rate constants for charge transfer and the distribution of semiconductor and electrolyte electronic energy levels in dye-sensitized solar cells by open-circuit photovoltage decay method
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Determination of rate constants for charge transfer and the distribution of semiconductor and electrolyte electronic energy levels in dye-sensitized solar cells by open-circuit photovoltage decay method

机译:用开路光电压衰减法测定染料敏化太阳能电池中电荷转移的速率常数以及半导体和电解质电子能级的分布

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摘要

A combination of electron lifetime measurement in nanoparticles as a function of the Fermi level position at high resolution in the potential scale with a new model to describe this dependence provides a powerful tool to study the microscopic processes and parameters governing recombination in dye-sensitized solar cells. This model predicts a behavior divided in three domains for the electron lifetime dependence on open-circuit voltage that is in excellent agreement with the experimental results: a constant lifetime at high photovoltage, related to free electrons; an exponential increase due to internal trapping and detrapping and an inverted parabolla at low photovoltage that corresponds to the density of levels of acceptor electrolyte species, including the Marcus inverted region.
机译:纳米粒子中电子寿命测量与费米能级位置在高分辨率下的费米能级位置的函数以及描述这种依赖性的新模型的结合,为研究染料敏化太阳能电池中控制重组的微观过程和参数提供了强大的工具。该模型预测了电子寿命对开路电压的依赖性,该行为分为三个域,这与实验结果非常吻合:高光电压下的恒定寿命,与自由电子有关;由于内部俘获和释放而导致的指数增加,以及在低光电压下的反向抛物线,这对应于包括Marcus反向区域在内的受体电解质种类的水平密度。

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