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Methodology for Analysis of Solid Oxide Cells via Raman Spectroscopy

机译:拉曼光谱分析固体氧化物电池的方法

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Solid oxide cells (SOCs) are highly efficient electrochemical energy conversion devices capable of operating in both fuel cell and electrolysis modes. The operating temperatures of SOCs (500 - 800 °C, for IT-SOCs) create opportunities for direct utilisation of a wide variety of reactants, including low-grade fuels such as biogas, however, in-situ characterisation of evolving electrode morphologies and compositions is challenging. The design of an optically accessible experimental setup is presented alongside methodology for obtaining and interpreting in-situ Raman spectroscopic measurements. Raman spectroscopy is a valuable analytical tool for in operando monitoring of both solid oxide electrolysis (SOEC) and fuel cells (SOFC). Molecular species adsorbed on the surface can be identified, thus providing direct insight into reaction intermediates, material phase transformations and the presence of contaminants and poisons, such as carbon, chromium, sulphur and silica. Raman spectroscopic evidence of carbon deposition during CO_2 electrolysis is discussed.
机译:固体氧化物电池(SOC)是高效的电化学能量转换设备,能够在燃料电池和电解模式下运行。 SOC的工作温度(IT-SOC的工作温度为500-800°C)为直接利用多种反应物创造了机会,包括诸如沼气之类的低级燃料,但是,就地表征了不断演变的电极形态和成分具有挑战性。提出了光学可访问的实验装置的设计,以及用于获取和解释原位拉曼光谱测量结果的方法。拉曼光谱法是用于操作监测固体氧化物电解(SOEC)和燃料电池(SOFC)的有价值的分析工具。可以识别吸附在表面上的分子种类,从而直接了解反应中间体,材料相变以及污染物和毒物(例如碳,铬,硫和二氧化硅)的存在。讨论了在CO_2电解过程中碳沉积的拉曼光谱证据。

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