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Methane C-H Bond Activation by Gas-Phase Th+ and U+: Reaction Mechanisms and Bonding Analysis

机译:气相Th +和U +活化甲烷C-H键:反应机理和键合分析

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摘要

Th+ is the only actinide ion that activates exothermically the strong C-H bonds of methane in the gas phase. In contrast, U+, as well as all of the rest of the experimentally studied An(+) cations, Is inert in the reaction with CH4. In this work, the activation of methane by thorium and uranium monocations was investigated using two different density functional theory approaches. The reaction mechanisms and the corresponding potential energy profiles were analyzed in detail. From the formation of the initial ion-molecule adduct, the Th+ + CH4 reaction pathway evolves completely along the doublet spin Surface, whereas that of U+ + CH4 involves solely the quartet bare cation ground spin state. The bonding properties of all of the species involved in the reaction pathways were investigated in terms of diverse analyses including natural bond orbital, atoms in molecules, and electron localization function. The dehydrogenation products (Th+=CH2, and U+=CH2) as well as the last insertion intermediates are characterized by the presence of alpha-agostic geometries.
机译:Th +是唯一能放热激活气相中甲烷的强C-H键的act系离子。相反,U +以及所有其他经过实验研究的An(+)阳离子在与CH4的反应中呈惰性。在这项工作中,使用两种不同的密度泛函理论方法研究了or和铀单阳离子对甲烷的活化作用。详细分析了反应机理和相应的势能分布。从初始离子分子加合物的形成开始,Th + + CH4反应路径完全沿着双峰自旋表面演化,而U + + CH4的反应途径仅涉及四重态裸阳离子基态自旋态。通过各种分析,包括自然键轨道,分子中的原子和电子定位功能,对参与反应路径的所有物种的键合性质进行了研究。脱氢产物(Th + = CH2和U + = CH2)以及最后的插入中间体的特征是存在α-声波几何结构。

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