A measurement system for photoelectrochemical processes with high-quality irradiation, temperature control, and automated gas analysis

David Adner, Lorenz Pfordte, Milan Selle, Max Pohl, Marko Turek, Christian Hagendorf
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Abstract

In this Application Note, a versatile and reliable measurement system for photoelectrochemical investigations is described which aims to assist scientists in obtaining reproducible photoelectrochemical data of high quality, including the solar-to-hydrogen (STH) efficiency. Specifically, it addresses the parameters irradiation quality, reaction temperature, and gas measurement. The setup is designed to exclude stray light and uses a solar-grade mirror to reflect the light of a vertical solar simulator on the electrochemical cell. The light quality in the setup (»AAA«, IEC 60904-9) is close to the classification of the solar simulator itself. The temperature in the electrochemical cell is controlled with an external Peltier element and can be kept constant in the range of 20–45°C. The influence of reaction temperature on the photocurrent of a WO3 photoanode is demonstrated. The gaseous reaction products are analyzed with a mobile gas chromatograph, using an automated measurement routine with discontinuous sampling from the electrochemical cell. The system is applied to determine the Faraday and STH efficiencies of a copper indium gallium selenide photocathode.

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具有高质量辐照、温度控制和自动气体分析功能的光电化学过程测量系统
本应用说明介绍了一种用于光电化学研究的多功能可靠测量系统,旨在帮助科学家获得可重复的高质量光电化学数据,包括太阳能制氢(STH)效率。具体来说,它涉及辐照质量、反应温度和气体测量等参数。该装置设计用于排除杂散光,并使用太阳能级反射镜将垂直太阳能模拟器的光反射到电化学电池上。装置中的光质量("AAA",IEC 60904-9)与太阳能模拟器本身的等级接近。电化学电池中的温度由外部珀尔帖元件控制,可保持在 20-45°C 范围内恒定不变。演示了反应温度对 WO3 光阳极光电流的影响。气态反应产物通过移动气相色谱仪进行分析,采用的是电化学电池不连续取样的自动测量程序。该系统可用于确定铜铟镓硒光电阴极的法拉第效率和 STH 效率。
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