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首页> 外文期刊>International Journal of Quantum Chemistry >Dynamics of the D-2+Ni(100) collision system: Analysis of the reactive and inelastic channels
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Dynamics of the D-2+Ni(100) collision system: Analysis of the reactive and inelastic channels

机译:D-2 + Ni(100)碰撞系统的动力学:反应性和非弹性通道的分析

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摘要

The reactive and scattering channels of the D-2(v, j) + Ni(100) collision system are studied using quasiclassical molecular dynamics simulations. The interaction between the D-2 and the atoms of the surface is modeled by a LEPS (London-Eyring-Polani-Sato) potential energy function. The molecule is aimed at three different impact sites (atop, bridge, and center) of a rigid Ni(100) surface along the normal direction with various collision energies less than or equal to1.0 eV. Dissociative chemisorption probabilities are computed for different rotational states of the molecule. Probability distributions of the final rovibrational states of the ground-state Dp molecule scattered from those impact sites are also computed as a function of the collision energy. Higher collision energy results in excitation of higher rotational and/or vibrational states of the scattered molecule. At collision energies below 0.1 eV an indirect dissociation mechanism (through molecular adsorption) dominates the reaction. (C) 2001 John Wiley & Sons, Inc. [References: 36]
机译:使用准经典分子动力学模拟研究了D-2(v,j)+ Ni(100)碰撞系统的反应通道和散射通道。 D-2和表面原子之间的相互作用是通过LEPS(伦敦-艾林-波拉尼-萨托)势能函数建模的。该分子沿法线方向指向刚性Ni(100)表面的三个不同的撞击点(顶部,桥梁和中心),碰撞能量小于或等于1.0 eV。针对分子的不同旋转状态计算解离化学吸附概率。还将从碰撞点散射的基态Dp分子的最终旋转振动态的概率分布作为碰撞能量的函数进行计算。较高的碰撞能量导致激发了散射分子较高的旋转和/或振动状态。在碰撞能量低于0.1 eV时,间接解离机理(通过分子吸附)占主导地位。 (C)2001 John Wiley&Sons,Inc. [参考:36]

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