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首页> 外文期刊>The Journal of Chemical Physics >Communication: Reactivity borrowing in the mode selective chemistry of H + CHD3 - H-2 + CD3
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Communication: Reactivity borrowing in the mode selective chemistry of H + CHD3 - H-2 + CD3

机译:通讯:H + CHD3 - &GT的模式选择性化学中的反应性借用。 H-2 + CD3

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Quantum state-resolved reaction probabilities for the H + CHD3 - H-2 + CD3 reaction are calculated by accurate full-dimensional quantum dynamics calculations using the multi-layer multi-configurational time-dependent Hartree approach and the quantum transition state concept. Reaction probabilities of various ro-vibrational states of the CHD3 reactant are investigated for vanishing total angular momentum. While the reactivity of the different vibrational states of CHD(3 )mostly follows intuitive patterns, an unusually large reaction probability is found for CHD3 molecules triply excited in the CD3 umbrella-bending vibration. This surprising reactivity can be explained by a Fermi resonance-type mixing of the single CH-stretch excited and the triple CD(3 )umbrella-bend excited vibrational states of CHD3 . These findings show that resonant energy transfer can significantly affect the mode-selective chemistry of CHD3 and result in counter-intuitive reactivity patterns. Published by AIP Publishing.
机译:量子状态分辨的H + CHD3 - &GT的反应概率; H-2 + CD3反应是通过使用多层多配置时间依赖的Hartree方法和量子过渡状态概念来计算的精确全维量子动力学计算来计算。研究了CHD3反应物的各种RO振动状态的反应概率,用于消失总角度。虽然CHD(3)的不同振动状态的反应性主要遵循直观的模式,但发现了在CD3伞弯曲振动中的CHD3分子进行了异常大的反应概率。这种令人惊讶的反应性可以通过单个Ch-Express激发的Fermi共振型混合来解释,并且三CD(3)伞 - 弯曲激发CHD3的激发振动状态。这些发现表明,共振能量传递可以显着影响CHD3的模式选择性化学,并导致反向直观的反应性模式。通过AIP发布发布。

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