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Characterization of Electrocatalytic Water Splitting and CO2 Reduction Reactions Using In Situ/Operando Raman Spectroscopy

机译:使用原位/手术数拉曼光谱法表征电催化水分解和CO2还原反应

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摘要

The electrocatalytic reduction of CO, and water splitting have received significant attention because recycling CO, into fuels and chemical feedstock is a crucial step to close the anthropogenic carbon circle, whereas splitting water produces H-2 gas, which is a valuable carbon-free energy carrier. The clear identification of the catalytic-active sites and elucidation of the reaction mechanisms in these systems remain a grand challenge. It requires simultaneous characterizations of the catalysts under actual reaction conditions. Raman spectroscopy is among the handful of techniques that are suitable for the in situ/operando investigations of heterogeneous catalytic systems. This Perspective will highlight primarily recent works on the application of Raman spectroscopy in unraveling the structural changes of catalysts, their possible active sites, and the intermediates formed during water electrolysis and CO, electroreduction. Results from complementary techniques such as X-ray absorption spectroscopy, among others, will also be presented in order to provide a more holistic discussion. The outlook for future work is discussed.
机译:CO和水分裂的电催化还原已得到显着的关注,因为再循环CO,燃料和化学原料是关闭人为碳圈的关键步骤,而分裂水产生H-2气体,这是一种有价值的无碳能量载体。透明鉴定催化活性位点并阐明这些系统中的反应机制仍然是一个大挑战。它需要在实际反应条件下同时表征催化剂。拉曼光谱是适用于异均催化系统的原位/操作型研究的少数技术之一。这种观点将主要突出地突出近期改变拉曼光谱在揭开催化剂的结构变化,其可能的活性位点以及在水电解和CO,电气电连接期间形成的中间体的结构变化。还将提出互补技术,例如X射线吸收光谱等,以提供更全面的讨论。讨论了未来工作的前景。

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