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C-H Bond Activation by Early Transition Metal Carbide Cluster Anion MoC3-

  • Zi Yu Li
  • , Lianrui Hu
  • , Qing Yu Liu
  • , Chuan Gang Ning
  • , Hui Chen*
  • , Sheng Gui He
  • , Jiannian Yao
  • *此作品的通讯作者

科研成果: 期刊稿件文章同行评审

摘要

Although early transition metal (ETM) carbides can activate C-H bonds in condensed-phase systems, the electronic-level mechanism is unclear. Atomic clusters are ideal model systems for understanding the mechanisms of bond activation. For the first time, C-H activation of a simple alkane (ethane) by an ETM carbide cluster anion (MoC3-) under thermal-collision conditions has been identified by using high-resolution mass spectrometry, photoelectron imaging spectroscopy, and high-level quantum chemical calculations. Dehydrogenation and ethene elimination were observed in the reaction of MoC3- with C2H6. The C-H activation follows a mechanism of oxidative addition that is much more favorable in the carbon-stabilized low-spin ground electronic state than in the high-spin excited state. The reaction efficiency between the MoC3- anion and C2H6 is low (0.23±0.05) %. A comparison between the anionic and a highly efficient cationic reaction system (Pt++C2H6) was made. It turned out that the potential-energy surfaces for the entrance channels of the anionic and cationic reaction systems can be very different.

源语言英语
页(从-至)17748-17756
页数9
期刊Chemistry - A European Journal
21
49
DOI
出版状态已出版 - 1 12月 2015
已对外发布

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