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Directed Gas-Phase Formation of the Germaniumsilylene Butterfly Molecule (Ge(μ-H2)Si)

  • Aaron M. Thomas
  • , Beni B. Dangi
  • , Tao Yang
  • , György Tarczay
  • , Ralf I. Kaiser*
  • , Bing Jian Sun
  • , Si Ying Chen
  • , Agnes H.H. Chang
  • , Thanh L. Nguyen
  • , John F. Stanton
  • , Alexander M. Mebel
  • *此作品的通讯作者
  • University of Hawai'i at Mānoa
  • Florida A&M University
  • Eotvos Lorand University
  • National Dong Hwa University
  • University of Florida
  • Florida International University
  • Samara National Research University

科研成果: 期刊稿件文章同行评审

摘要

The hitherto elusive dibridged germaniumsilylene molecule (Ge(μ-H2)Si) has been formed for the first time via the bimolecular gas-phase reaction of ground-state germanium atoms (Ge) with silane (SiH4) under single-collision conditions. Merged with state-of-the-art electronic structure calculations, the reaction was found to proceed through initial formation of a van der Waals complex in the entrance channel, insertion of the germanium into a silicon-hydrogen bond, intersystem crossing from the triplet to the singlet surface, hydrogen migrations, and eventually elimination of molecular hydrogen via a tight exit transition state, leading to the germaniumsilylene "butterfly". This investigation provides an extraordinary peek at the largely unknown silicon-germanium chemistry on the molecular level and sheds light on the essential nonadiabatic reaction dynamics of germanium and silicon, which are quite distinct from those of the isovalent carbon system, thus offering crucial insights that reveal exotic chemistry and intriguing chemical bonding in the germanium-silicon system on the most fundamental, microscopic level.

源语言英语
页(从-至)1264-1271
页数8
期刊Journal of Physical Chemistry Letters
10
6
DOI
出版状态已出版 - 21 3月 2019

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