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用于金属氧化物电极表面原位和操作机理研究的光谱电化学装置。

Spectro-electrochemical setup for in situ and operando mechanistic studies on metal oxide electrode surfaces.

作者信息

Hauser Daniel, Nenning Andreas, Opitz Alexander K, Klötzer Bernhard, Penner Simon

机构信息

Institute of Physical Chemistry, University of Innsbruck, A-6020 Innsbruck, Austria.

Institute of Chemical Technologies and Analytics, TU Wien, A-1040 Vienna, Austria.

出版信息

Rev Sci Instrum. 2020 Aug 1;91(8):084104. doi: 10.1063/5.0007435.

Abstract

This work shows a combined setup of Diffuse Reflectance FT-IR Spectroscopy (DRIFTS) and electrochemical characterization by AC and DC methods for in situ and operando investigations of surface species during CO electrolysis on metal oxide electrodes and their correlation with electrochemical activity. A high-temperature reaction chamber enables conducting DRIFTS and electrochemical experiments simultaneously at temperatures up to 1000 °C in both reductive and oxidative reaction atmospheres and under anodic and cathodic polarization conditions. A dedicated gas- and electrical feedthrough solution is presented, which is the key element required for recording electrochemical AC and DC characteristics using an electrochemical cell, which is simultaneously studied by DRIFTS experiments under realistic operation conditions. Selected results, obtained on a gadolinium doped ceria model solid oxide electrolysis cell upon different polarization states, demonstrate the basic functionality and capabilities of the setup and show how the simultaneous DRIFT-spectroscopic and electrochemical investigation of the surface and bulk chemistry on electrode materials leads to increased insight in the population of potential intermediates during CO electrolysis. With infrared spectroscopy and impedance spectroscopy as common and complementary spectroscopic methods in material science, the setup is considered to exhibit a huge potential in a wide field of fundamental and applied mechanistic research.

摘要

这项工作展示了漫反射傅里叶变换红外光谱(DRIFTS)与交流和直流方法的电化学表征相结合的装置,用于在金属氧化物电极上进行CO电解过程中表面物种的原位和 operando 研究,以及它们与电化学活性的相关性。一个高温反应室能够在还原和氧化反应气氛中以及在阳极和阴极极化条件下,在高达1000°C的温度下同时进行DRIFTS和电化学实验。提出了一种专用的气体和电馈通解决方案,这是使用电化学池记录电化学交流和直流特性所需的关键要素,该电化学池在实际操作条件下同时通过DRIFTS实验进行研究。在不同极化状态下的钆掺杂二氧化铈模型固体氧化物电解池上获得的选定结果,证明了该装置的基本功能和能力,并展示了对电极材料表面和体相化学的同步DRIFT光谱和电化学研究如何能够更深入地了解CO电解过程中潜在中间体的情况。由于红外光谱和阻抗光谱是材料科学中常用的互补光谱方法,该装置被认为在广泛的基础和应用机理研究领域具有巨大潜力。

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