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染料敏化太阳能电池中光电瞬态和电荷提取测量的解释。

Interpretation of optoelectronic transient and charge extraction measurements in dye-sensitized solar cells.

机构信息

Department of Chemistry, Imperial College London, Exhibition Road, London SW7 2AZ, UK.

出版信息

Adv Mater. 2013 Apr 4;25(13):1881-922. doi: 10.1002/adma.201201372. Epub 2013 Feb 13.

Abstract

Tools that assess the limitations of dye sensitized solar cells (DSSCs) made with new materials are critical for progress. Measuring the transient electrical signals (voltage or current) after optically perturbing a DSSC is an approach which can give information about electron concentration, transport and recombination. Here we describe the theory and practice of this class of optoelectronic measurements, illustrated with numerous examples. The measurements are interpreted with the multiple trapping continuum model which describes electrons in a semiconductor with an exponential distribution of trapping states. We review standard small perturbation photocurrent and photovoltage transients, and introduce the photovoltage time of flight measurement which allows the simultaneous derivation of both effective diffusion and recombination coefficients. We then consider the utility of large perturbation measurements such as charge extraction and the current interrupt technique for finding the internal charge and voltage within a device. Combining these measurements allows differences between DSSCs to be understood in terms such as electron collection efficiency, semiconductor conduction band edge shifts and recombination kinetics.

摘要

用于评估使用新材料制成的染料敏化太阳能电池 (DSSC) 局限性的工具对于取得进展至关重要。测量 DSSC 受到光干扰后瞬态电信号(电压或电流)是一种可以提供有关电子浓度、输运和复合信息的方法。本文描述了这类光电测量的理论和实践,并用大量实例进行了说明。该测量通过描述半导体中具有指数分布的陷阱态的电子的多陷阱连续体模型进行解释。我们回顾了标准的小扰动向光电流和光电压瞬变,并引入了光电压飞行时间测量,该测量允许同时得出有效扩散和复合系数。然后,我们考虑了大扰动向光电流和光电压瞬变的实用性,例如电荷提取和电流中断技术,以找到器件内的内部电荷和电压。结合这些测量,可以根据电子收集效率、半导体导带边缘位移和复合动力学等方面来理解 DSSC 之间的差异。

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