Potential Energy Surfaces for Reactions of X Metal Atoms (X = Cu, Zn, Cd, Ga, Al, Au, or Hg) with YH4 Molecules (Y = C, Si, or Ge) and Transition Probabilities at Avoided Crossings in Some Cases

O. Novaro, María del Alba Pacheco-Blas, J. Pacheco-Sánchez
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引用次数: 8

Abstract

We review ab initio studies based on quantum mechanics on the most important mechanisms of reaction leading to the C–H, Si–H, and Ge–H bond breaking of methane, silane, and germane, respectively, by a metal atom in the lowest states in Cs symmetry: X(2nd excited state, 1st excited state and ground state)
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X金属原子(X = Cu, Zn, Cd, Ga, Al, Au或Hg)与YH4分子(Y = C, Si或Ge)反应的势能面和某些情况下避免交叉的跃迁概率
本文综述了基于量子力学的从头算研究,讨论了在Cs对称中最低态X(第二激发态、第一激发态和基态)金属原子分别导致甲烷、硅烷和锗烷的C-H、Si-H和Ge-H键断裂的最重要的反应机制。
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