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Quantum dynamics study of H+NH3 - H-2+NH2 reaction

机译:H + NH3-> H-2 + NH2反应的量子动力学研究

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We report in this paper a quantum dynamics study for the reaction H+NH3 -> NH2+H-2 on the potential energy surface of Corchado and Espinosa-Garcia [J. Chem. Phys. 106, 4013 (1997)]. The quantum dynamics calculation employs the semirigid vibrating rotor target model [J. Z. H. Zhang, J. Chem. Phys. 111, 3929 (1999)] and time-dependent wave packet method to propagate the wave function. Initial state-specific reaction probabilities are obtained, and an energy correction scheme is employed to account for zero point energy changes for the neglected degrees of freedom in the dynamics treatment. Tunneling effect is observed in the energy dependency of reaction probability, similar to those found in H+CH4 reaction. The influence of rovibrational excitation on reaction probability and stereodynamical effect are investigated. Reaction rate constants from the initial ground state are calculated and are compared to those from the transition state theory and experimental measurement. (c) 2007 American Institute of Physics.
机译:我们在本文中报道了在Corchado和Espinosa-Garcia的势能表面上反应H + NH3-> NH2 + H-2的量子动力学研究[J. Chem。Sci。化学物理106,4013(1997)]。量子动力学计算采用半刚性振动转子目标模型[J. Z.H. Zhang,J.Chem。物理111,3929(1999)]和时变波包方法传播波函数。获得了初始状态特定的反应概率,并采用了能量校正方案来解决动力学处理中被忽略的自由度的零点能量变化。在反应概率的能量依赖性中观察到隧穿效应,类似于在H + CH4反应中发现的隧穿效应。研究了振动激发对反应概率和立体动力学效应的影响。计算初始基态的反应速率常数,并将其与过渡态理论和实验测量的常数进行比较。 (c)2007年美国物理研究所。

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