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首页> 外文期刊>European journal of mass spectrometry >A study of the methane catalyzed isomerization of HCO+ to HOC+ and the elimination of methane from metastable methoxymethyl cation
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A study of the methane catalyzed isomerization of HCO+ to HOC+ and the elimination of methane from metastable methoxymethyl cation

机译:甲烷催化HCO +异构化为HOC +以及从亚稳甲氧基甲基阳离子中消除甲烷的研究

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Electronic structure calculations on the methane catalyzed HCO+/HOC+ potential energy surface have been conducted. The results show that 1,2-proton transfer from C to O can be efficiently catalyzed by CH4. The complex CH4/HCO+ and the closely related species, CH5+/CO, are separated from the methoxymethyl cation CH3OCH2+ by a large potential energy barrier. It follows from the calculations that the metastable methoxymethyl cation is very unlikely to dissociate to yield HOC+. New experiments also show that HOC+ is not produced to any observable extent. A new explanation is proposed for the composite peak for m/z 29 observed from metastable dissociation of metastable methoxymethyl cation. The two components both arise from the formation of HCO+, but via different transition states. The minor, narrow, component involves dissociation from the CH5+/CO complex and the broad peak from the CH4/HCO+ ion-molecule complex.
机译:在甲烷催化的HCO + / HOC +势能面上进行了电子结构计算。结果表明,CH4可以有效催化从C到O的1,2-质子转移。复杂的CH4 / HCO +和密切相关的物质CH5 + / CO通过较大的势能垒与甲氧基甲基阳离子CH3OCH2 +隔开。从计算得出,亚稳的甲氧基甲基阳离子极不可能解离生成HOC +。新的实验还表明,HOC +的产生没有任何可观察的程度。对亚稳甲氧基甲基阳离子的亚稳解离所观察到的m / z 29的复合峰提出了新的解释。这两个成分都来自HCO +的形成,但通过不同的过渡态。较小的窄组分涉及到CH5 + / CO络合物的离解和CH4 / HCO +离子-分子络合物的宽峰。

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