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The dissociative adsorption of hydrogen: Two-, three-, and four-dimensional quantum simulations

机译:氢的解离吸附:二维,三维和四维量子模拟

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摘要

A quantum wave packet calculation for the activated dissociative adsorption of H2 is presented. Restricting the motion of the molecule to lie within a plane normal to the surface we have treated all four molecular degrees of freedom exactly. We compare results obtained using two-, three-, and four-dimensional simulations on the same potential and show that by restricting the molecular orientation, important dynamical effects are lost. The potential employed in the calculations has been obtained using the effective medium approximation. In the simulations it has been possible to treat dissociation, rotations and diffraction on an equal footing. By including a rotational degree of freedom, it is seen that strong orientational effects occur near to the transition state and result in an anisotropic selectivity in the dissociation. By examining the state-to-state scattering probabilities, it is possible to use the nonreacting (scattered) fraction to provide information on the reactive potential energy surface. The Journal of Chemical Physics is copyrighted by The American Institute of Physics.
机译:提出了H2活化离解吸附的量子波包计算。为了将分子的运动限制在垂直于表面的平面内,我们已经精确地处理了所有四个分子自由度。我们比较了在相同电势下使用二维,三维和四维模拟获得的结果,并表明通过限制分子方向,会失去重要的动力学效应。计算中使用的电势已使用有效的介质近似值获得。在模拟中,可以在相同的基础上处理离解,旋转和衍射。通过包括旋转自由度,可以看出在过渡态附近会发生强烈的取向效应,并导致解离的各向异性选择性。通过检查状态到状态的散射概率,可以使用未反应(散射)的分数在无功势能表面上提供信息。 《化学物理学杂志》的版权归美国物理学会所有。

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