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原子态金阳离子与线性烷烃(C2 - C9)的气相反应

Gas-Phase Reactions of Atomic Gold Cations with Linear Alkanes (C2-C9).

作者信息

Zhang Ting, Li Zi-Yu, Zhang Mei-Qi, He Sheng-Gui

机构信息

Beijing National Laboratory for Molecular Sciences, State Key Laboratory for Structural Chemistry of Unstable and Stable Species, Institute of Chemistry, Chinese Academy of Sciences , Beijing 100190, P. R. China.

University of Chinese Academy of Sciences , Beijing 100049, P. R. China.

出版信息

J Phys Chem A. 2016 Jun 30;120(25):4285-93. doi: 10.1021/acs.jpca.6b03836. Epub 2016 Jun 20.

Abstract

To develop proper ionization methods for alkanes, the reactivity of bare or ligated transition metal ions toward alkanes has attracted increasing interests. In this study, the reactions of the gold cations with linear alkanes from ethane up to nonane (CnH2n+2, n = 2-9) under mild conditions have been characterized by mass spectrometry and density functional theory calculations. When reacting with Au(+), small alkanes (n = 2-6) were confirmed to follow specific reaction channels of dehydrogenation for ethane and hydride transfer for others to generate product ions characteristic of the original alkanes, which indicates that Au(+) can act as a reagent ion to ionize alkanes from ethane to n-hexane. Strong dependence of the chain length of alkanes was observed for the rate constants and reaction efficiencies. Extensive fragmentation took place for larger alkanes (n > 6). Theoretical results show that the fragmentation induced by the hydride transfer occurs after the release of AuH. Moreover, the fragmentation of n-heptane was successfully avoided when the reaction took place in a high-pressure reactor. This implies that Au(+) is a potential reagent ion to ionize linear and even the branched alkanes.

摘要

为了开发适用于烷烃的电离方法,裸金属离子或配位过渡金属离子对烷烃的反应活性已引起越来越多的关注。在本研究中,通过质谱和密度泛函理论计算对温和条件下金阳离子与从乙烷到壬烷的直链烷烃(CnH2n+2,n = 2 - 9)的反应进行了表征。当与Au(+)反应时,已证实小分子烷烃(n = 2 - 6)遵循乙烷脱氢和其他分子氢化物转移的特定反应通道,以生成原始烷烃特征的产物离子,这表明Au(+)可作为试剂离子将乙烷到正己烷的烷烃电离。观察到烷烃链长对速率常数和反应效率有很强的依赖性。较大的烷烃(n > 6)发生了广泛的碎片化。理论结果表明,氢化物转移引起的碎片化发生在AuH释放之后。此外,当反应在高压反应器中进行时,正庚烷的碎片化成功避免。这意味着Au(+)是电离直链甚至支链烷烃的潜在试剂离子。

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