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Effects of Dynamic Lattice Displacement Generated by Surface Acoustic Wave and Resonance Oscillation on Heterogeneous Catalysis

机译:表面声波产生的动态晶格位移和共振振荡对非均相催化的影响

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摘要

The effects of dynamic lattice displacementgenerated by surface acoustic wave (SAW) and resonanceoscillation (RO) on heterogeneous catalysis were reviewed.Both SAW and RO were shown to have the ability tosignificantly change the selectivity of ethanol dehydrogenationand dehydration on Cu and Ag catalysts. A remarkable activityincrease in ethanol oxidation on Pd with RO was demonstrated.Large dynamic lattice displacement vertical to the surfacecaused changes in the surface potential and the work functionwhich are associated with the catalyst activation. The concept ofdynamic lattice displacement is useful for the design of aheterogeneous catalyst with artificially controllable functions forchemical reactions.
机译:综述了表面声波(SAW)和共振(RO)产生的动态晶格位移对非均相催化的影响。SAW和RO均具有显着改变乙醇脱氢和脱水对Cu和Ag催化剂的选择性的能力。结果表明,RO对Pd的乙醇氧化具有显着的活性增加。垂直于表面的大动态晶格位移导致表面电位和功函数的变化,这与催化剂的活化有关。动态晶格位移的概念可用于设计具有可人工控制的化学反应功能的非均相催化剂。

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