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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Ligand and electronic-structure effects in metal-mediated gas-phase activation of methane: A cold approach to a hot problem
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Ligand and electronic-structure effects in metal-mediated gas-phase activation of methane: A cold approach to a hot problem

机译:金属介导的甲烷气相活化中的配体和电子结构效应:一种解决热点问题的冷方法

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摘要

Gas-phase ion-molecule reactions, complemented by DFT and wave-function based electronic structure calculations, are presented, which permit rather detailed descriptions of two fundamental processes related to the activation of methane at room temperature. (i) Recent examples are discussed, which shed light on the role of oxygen-centered radicals in the first step of the oxidative dimerization of methane, i. e. the homolytic C-H bond cleavage of methane. (ii) Thermal ligand exchange processes of the type ML+ + CH4 -> M(CH3)(+) + LH are analyzed in detail with an emphasis on L = H and F attached to various transition-metal cations M+. It will be demonstrated inter alia that similar systems, e. g. MH+ (M = Ni, Pd, Pt) in their room-temperature reactions with methane, actually exhibit fundamentally different mechanistic scenarios.
机译:提出了气相离子分子反应,辅以DFT和基于波函数的电子结构计算,可以相当详细地描述与室温下甲烷活化有关的两个基本过程。 (i)讨论了最近的例子,这些例子阐明了以氧为中心的自由基在甲烷氧化二聚化第一步中的作用,即e。甲烷的均相C-H键裂解(ii)详细分析了ML + + CH4-> M(CH3)(+)+ LH类型的热配体交换过程,重点是L = H和F附着在各种过渡金属阳离子M +上。除其他外,将证明类似的系统,例如。 G。 MH +(M = Ni,Pd,Pt)在与甲烷的室温反应中,实际上表现出根本不同的机理。

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