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First-principles investigation of the coupling-induced dissociation of methane and its transformation to ethane and ethylene

机译:甲烷偶联诱导解离及其转化对乙烷和乙烯的第一原理研究

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Quantum chemical computations predict that compression of the methane dimer to an inter-nuclear separation lower than 2?? facilitates a concerted coupling and dissociation of CH bonds of the molecules to form ethane/ethylene. In this bimolecular, concerted mechanism, ethane formation is accompanied by production of H radicals from each methane moiety that may further abstract hydrogen atoms to lead to ethylene formation. Alternatively, transformation to ethane and ethylene proceeds via stepwise molecular hydrogen elimination, with the first eliminated hydrogen molecule originating from one of the methane moieties, accompanied by an intermolecular hydrogen transfer, and the second originating from both methyl groups.
机译:量子化学计算预测甲烷二聚体的压缩低于2的核分离 促进分子的Ch键的齐次偶联和解离,以形成乙烷/乙烯。 在这种双分子的齐齐机制中,乙烷形成伴随着来自每种甲烷部分的H基团的产生,这可能进一步抽象氢原子以导致乙烯形成。 或者,通过逐步分子氢消除转化为乙烷和乙烯进行,其中源自甲烷部分之一的第一个消除的氢分子,伴随着分子间氢转移,以及来自两个甲基的第二个源自分子。

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