首页> 外文期刊>Journal of the American Chemical Society >TRUE AND SPECTATOR INTERMEDIATES IN CATALYSIS - THE CASE OF ETHANOL OXIDATION ON MOLYBDENUM OXIDE AS OBSERVED BY IN SITU LASER RAMAN SPECTROSCOPY
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TRUE AND SPECTATOR INTERMEDIATES IN CATALYSIS - THE CASE OF ETHANOL OXIDATION ON MOLYBDENUM OXIDE AS OBSERVED BY IN SITU LASER RAMAN SPECTROSCOPY

机译:真实的和光谱的中介作用-原位激光拉曼光谱观察到的氧化钼对乙醇的氧化作用

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摘要

A high-throughput laser Raman spectrometer is used to detect adsorbed ethoxide species during the catalytic oxidation of ethanol over supported molybdenum oxide at atmospheric pressure. Two different species are observed, a true reaction intermediate and a relatively inert spectator on the surface. Steady-state and dynamic experiments indicate that the reactive species is associated with Mo=O terminal bonds on the surface, while the spectator is associated with Mo-O-Mo bridging bonds. Deuterium isotopic substitution experiments indicate that the active intermediate is formed in an equilibrated adsorption step, and decomposes by a rate-determining alpha-C-H bond-breaking step to form acetaldehyde.
机译:高通量激光拉曼光谱仪用于在大气压力下通过负载的氧化钼催化乙醇催化氧化过程中检测到的乙醇氧化物种类。观察到两种不同的物质,一种是真正的反应中间体,另一种是表面上相对惰性的观众。稳态和动态实验表明,反应性物种与表面上的Mo = O末端键相关,而旁观者与Mo-O-Mo桥键相关。氘同位素取代实验表明,活性中间体是在平衡吸附步骤中形成的,并通过决定速率的α-C-H键断裂步骤进行分解,从而形成乙醛。

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