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首页> 外文期刊>Angewandte Chemie >Selective C-H Bond Cleavage in Methane by Small Gold Clusters
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Selective C-H Bond Cleavage in Methane by Small Gold Clusters

机译:通过小金簇选择性C-H粘合裂解甲烷

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摘要

Methane represents the major constituent of natural gas. It is primarily used only as a source of energy by means of combustion, but could also serve as an abundant hydrocarbon feedstock for high quality chemicals. One of the major challenges in catalysis research nowadays is therefore the development of materials that selectively cleave one of the four C-H bonds of methane and thus make it amenable for further chemical conversion into valuable compounds. By employing infrared spectroscopy and first-principles calculations it is uncovered herein that the interaction of methane with small gold cluster cations leads to selective C-H bond dissociation and the formation of hydrido methyl complexes, H-Au-x(+)-CH3. The distinctive selectivity offered by these gold clusters originates from a fine interplay between the closed-shell nature of the dstates and relativistic effects in gold. Such fine balance in fundamental interactions could prove to be a tunable feature in the rational design of a catalyst.
机译:甲烷代表天然气的主要组成部分。它主要仅用于通过燃烧作为能量来源,但也可以作为高质量化学品的一种丰富的碳氢化合物原料。因此,催化研究中的主要挑战之一是开发有选择性地切割甲烷的四个C-H键之一的材料,从而使其适用于进一步的化学转化成有价值的化合物。通过采用红外光谱和第一原理计算,其在本文中发现,甲烷与小金簇阳离子的相互作用导致选择性C-H键解离和氢化机甲基络合物的形成,H-AU-X(+) - CH3。这些金簇提供的独特选择性来自DSTETES的闭合壳性质与金色中的相对论效果之间的精细相互作用。基本相互作用中的这种微观平衡可能是一种可调谐特征,是催化剂的合理设计。

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