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首页> 外文期刊>Theoretical Chemistry Accounts >Chloromethane and dichloromethane decompositions inside nanotubes as models of reactions in confined space
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Chloromethane and dichloromethane decompositions inside nanotubes as models of reactions in confined space

机译:纳米管内部的氯甲烷和二氯甲烷分解,作为受限空间中反应的模型

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摘要

A combination of ab initio MP2 and molecular mechanics UFF calculations have been employed to study chloromethane and dichloromethane decomposition reaction inside carbon nanotubes (CNTs). The results suggest that the impact of the nanotubes on the mechanism of the reaction depends on the diameter of the nanotube. Nanotubes with a large diameter affect the reaction in a negligible way. On the other hand, most of the reactions taking place inside small nanotubes are considerably altered. The presence of the CNT may affect the geometries of the reactants, the reaction energy barriers, as well as the energetic outcome of the reactions. All the reactions have been described by means of energetic, thermodynamic, and vibrational analyses, which allowed us to form general conclusions concerning the reaction taking place in a confined space.
机译:从头算起MP2和分子力学UFF计算的结合已用于研究碳纳米管(CNT)内部的氯甲烷和二氯甲烷分解反应。结果表明,纳米管对反应机理的影响取决于纳米管的直径。大直径的纳米管对反应的影响可以忽略不计。另一方面,在小纳米管内发生的大多数反应都发生了很大的变化。 CNT的存在可能影响反应物的几何形状,反应能垒以及反应的能量结果。已经通过能量,热力学和振动分析描述了所有反应,这使我们能够得出关于在狭窄空间内发生反应的一般结论。

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