HF reactions indicate a different behavior at low and high vibratio'/> Dynamics of bimolecular reactions of vibrationally highly excited molecules: Quasiclassical trajectory studies
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Dynamics of bimolecular reactions of vibrationally highly excited molecules: Quasiclassical trajectory studies

机译:高振动分子的双分子反应动力学:准经典轨迹研究

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Excitation functions from quasiclassical trajectory calculations on the H + H2O -> OH + H-2, H + HF -> F + H-2, and H + H'F - H' -> HF reactions indicate a different behavior at low and high vibrational excitation of the breaking bond. When the reactant tri- or diatomic molecule is in vibrational ground state or in a low vibrationally excited state, all these reactions are activated; i.e., there is a nonzero threshold energy below which there is no reaction. In contrast, at high-stretch excited-states capture-type behavior is observed; i.e., with decreasing translational energy the reactive cross-section diverges. The latter induces extreme vibrational enhancement of the thermal rate consistent with the experiments. The results indicate that the speed-up observed at high vibrational excitation is beyond the applicability of Polanyi's rules in their common form; instead, it can be interpreted in terms of an attractive potential acting on the attacking H atom when it approaches the reactant with a stretched X-H bond.
机译:H + H2O-> OH + H-2,H + HF-> F + H-2和H + H'F-H'-> HF反应的准经典轨迹计算中的激励函数表明在低和断裂键的高振动激发。当反应物三或双原子分子处于振动基态或处于低振动激发态时,所有这些反应都被激活;即,存在非零阈值能量,低于该阈值能量则没有反应。相反,在高拉伸激发态下,观察到捕获型行为。即,随着平移能量的降低,反应性横截面发散。后者引起与实验一致的热速率的极大振动增强。结果表明,在高振动激励下观察到的加速超出了波兰尼定律的通用形式。取而代之的是,当它以伸展的X-H键接近反应物时,可以用作用在进攻的H原子上的吸引力来解释。

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