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Unusual behavior of bimetallic nanoparticles in catalytic processes of hydrogenation and selective oxidation

机译:双金属纳米粒子在氢化和选择性氧化催化过程中的不寻常行为

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摘要

Recent results obtained in studying mono- and bimetallic catalysts for selective hydrogenation of unsaturated carbonyl compounds, even unsaturated ones, acetylenic and nitro compounds as well as CO and bio-available alcohols oxidation are reviewed from the standpoint of the strong interaction between the metal nanoparticles, on the one hand, and two metals in the composition of bimetallic nanoparticles, on the other hand. Such interactions were demonstrated to result in partial positive or negative charging of metal nanoparticles, which, in turn, changes their adsorption and catalytic properties, especially with respect to the reactions involving hydrogen. Among the systems studied, Au-Pt, Au-Pd, Au-Cu, Au-Fe, Pt-WOx, Fe-Pd, Fe-Pt, Fe-Cu nanoparticles prepared by the redox procedure are considered to be most perspective in diverse catalytic applications because of the proper combination of the particle size and the electronic state of the metals.
机译:从金属纳米颗粒之间的强相互作用的观点来看,研究了用于选择性氢化的单次和双金属催化剂,用于选择性氢化不饱和羰基化合物的单次和双金属催化剂,甚至是不饱和羰基化合物的选择性氢化,乙酰烯键和硝基化合物以及CO和生物可用的醇氧化。 另一方面,在双金属纳米颗粒的组成中,两只手中的两个金属,另一方面。 已经证明这种相互作用导致金属纳米颗粒的部分正或负充电,反过来,这反过来改变它们的吸附和催化性质,特别是相对于涉及氢的反应。 在研究的系统中,通过氧化还原程序制备的Au-Pt,Au-Pd,Au-Cu,Au-Fe,Pt-Wox,Fe-Pd,Fe-Pt,Fe-Cu纳米粒子被认为是多样化的最佳视角 催化应用由于粒度的适当组合和金属的电子状态。

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