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Coupled analysis of steady-state and dynamic characteristics of dye-sensitized solar cells for determination of conduction band movement and recombination parameters

机译:染料敏化太阳能电池稳态和动态特性的耦合分析,用于确定导带运动和复合参数

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摘要

A new research strategy for determining the conduction band movement of TiO2 films and charge recombination between electrons in the TiO2 film and electron acceptors in the electrolyte was proposed. Steady-state short-circuit current density versus open-circuit voltage was employed to attain the exchange current density and recombination reaction order. Transient photovoltage decay and open-circuit voltage decay measurements were carried out to obtain the energetic distribution of trapped electrons. Reduced voltage-dependent trapped electron concentration and trapped electron concentration-dependent recombination current density were used to analyze influence factors of open-circuit voltage, including contributions from conduction band movement and charge recombination. The simulated and measured electron concentration were in agreement and confirmed the validity of this method for extracting conduction band movement and recombination parameters. This new approach provides a physical insight which could help us to more conveniently and efficiently understand the operation of DSCs.
机译:提出了确定TiO2薄膜导带运动以及TiO2薄膜中电子与电解质中电子受体之间电荷复合的新研究策略。使用稳态短路电流密度与开路电压的关系来获得交换电流密度和重组反应顺序。进行了瞬态光电压衰减和开路电压衰减测量,以获得俘获电子的能量分布。用降低的电压依赖性俘获电子浓度和俘获电子浓度依赖性重组电流密度来分析开路电压的影响因素,包括导带运动和电荷重组的影响。模拟和测量的电子浓度是一致的,并证实了该方法提取导带运动和重组参数的有效性。这种新方法提供了一种物理见解,可以帮助我们更方便和有效地理解DSC的操作。

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