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Ab Initio Molecular Dynamics Simulation Study on the Stereo Reactions between Atomic Oxygen Anion and Methane

机译:AB Initio分子动力学模拟原子氧阴离子和甲烷的立体反应

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摘要

Ion–molecule reaction between atomic oxygen anion (O−) and methane (CH4) has been systematically investigated employing the on-the-fly ab initio molecular dynamics simulations. Besides the major H-abstraction process as the exothermic reaction studied widely, an endothermic pathway to produce OCH3− and H is also observed in this study. Three typical O− attack modes with reference to the pyramid structure of CH4 fixed in space have been considered. It was found that the internal motions of the radical products are significantly dependent on the O− attack modes. As for the reaction between O− and the thermally vibrating CH4, the major pathway to produce OH− and CH3 is preferred by the direct H-abstraction and the minor pathway to produce H and OCH3− is the roaming reaction via the transient negative ion [HO-CH3]−.
机译:已经系统地研究了原子氧阴离子(O-)和甲烷(CH4)之间的离子分子反应,采用了持续的AB初始分子动力学模拟。除了主要的H-Abstraction过程之外,作为广泛研究的放热反应,还在本研究中观察到产生OCH 3和H的吸热途径。考虑了三种典型的O-攻击模式,参考了在空间中固定的CH4的金字塔结构。发现自由基产品的内部运动显着取决于O-攻击模式。至于O-和热振动CH4之间的反应,通过直接H次抽象和产生H和OCH 3的小途径优选产生OH-和CH3的主要途径是通过瞬态负离子的漫游反应[ HO-CH3] - 。

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