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Non-Adiabatic Reaction Dynamics in the Gas-Phase Formation of Phosphinidenesilylene, the Isovalent Counterpart of Hydrogen Isocyanide, under Single-Collision Conditions

  • Chao He
  • , Zhenghai Yang
  • , Srinivas Doddipatla
  • , Long Zhao
  • , Shane Goettl
  • , Ralf I. Kaiser*
  • , Mateus Xavier Silva
  • , Breno R.L. Galvão*
  • *此作品的通讯作者
  • University of Hawai'i at Mānoa
  • Centro Federal de Educação Tecnológica de Minas Gerais

科研成果: 期刊稿件文章同行评审

摘要

The phosphinidenesilylene (HPSi; X1A′) molecule was prepared via a directed gas-phase synthesis in the bimolecular reaction of ground-state atomic silicon (Si; 3P) with phosphine (PH3; X1A1) under single-collision conditions. The chemical dynamics are initiated on the triplet surface via addition of a silicon atom to the non-bonding electron pair of phosphine, followed by non-adiabatic dynamics and surface hopping to the singlet manifold, accompanied by isomerization via atomic hydrogen shift and decomposition to phosphinidenesilylene (HPSi, X1A′) along with molecular hydrogen. Statistical calculations predict that silylidynephosphine (HSiP, X1ς+) is also formed, albeit with lower yields. The barrier-less route to phosphinidenesilylene opens up a multipurpose mechanism to access the hitherto obscure class of phosphasilenylidenes through silicon-phosphorus coupling via reactions of atomic silicon with alkylphosphines under single-collision conditions in the absence of successive reactions of the reaction products, which are not feasible to prepare by traditional synthetic routes.

源语言英语
页(从-至)2489-2495
页数7
期刊Journal of Physical Chemistry Letters
12
10
DOI
出版状态已出版 - 18 3月 2021
已对外发布

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