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首页> 外文期刊>The Journal of Chemical Physics >Efficient global representations of potential energy functions: Trajectory calculations of bimolecular gas-phase reactions by multiconfiguration molecular mechanics
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Efficient global representations of potential energy functions: Trajectory calculations of bimolecular gas-phase reactions by multiconfiguration molecular mechanics

机译:势能函数的有效全局表示:通过多构型分子力学计算双分子气相反应的轨迹

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摘要

Multiconfiguration molecular mechanics (MCMM) was previously applied to calculate potential energies, gradients, and Hessians along a reaction path and in the large-curvature tunneling swath, and it was shown that one could calculate variational transition state theory rate constants with optimized multidimensional tunneling without requiring more than a few electronic structure Hessians. It was also used for molecular dynamics simulations of liquid-phase potentials of mean force as functions of a reaction coordinate. In the present article we present some improvements to the formalism and also show that with these improvements we can use the method for the harder problem of trajectory calculations on gas-phase bimolecular reactive collisions. In particular, we apply the MCMM algorithm to the model reaction OH+H-2 -> H2O+H, for which we construct the global full-dimensional interpolated potential energy surfaces with various numbers of electronic structure Hessians and various molecular mechanics force fields, and we assess the quality of these fits by quasiclassical trajectory calculations. We demonstrate that chemical accuracy (1-2 kcal/mol) can be reached for a MCMM potential in dynamically important regions with a fairly small number of electronic structure Hessians. We also discuss the origins of the errors in the interpolated energies and a possible way to improve the accuracy.
机译:先前曾应用多配置分子力学(MCMM)来计算沿反应路径和大曲率隧穿带中的势能,梯度和Hessian,并且证明了可以在不采用优化多维隧穿的情况下计算变分过渡状态理论速率常数。需要多个电子结构的黑森州。它也用于平均力作为反应坐标函数的液相电势的分子动力学模拟。在本文中,我们对形式主义进行了一些改进,并且还表明,通过这些改进,我们可以将方法用于气相双分子反应性碰撞的轨迹计算的较难问题。特别是,我们将MCMM算法应用于模型反应OH + H-2-> H2O + H,为此我们构建了具有各种电子结构黑森斯和各种分子力学力场的全局全尺寸内插势能面,我们通过准经典轨迹计算来评估这些拟合的质量。我们证明,在动态重要区域中具有相当少量的电子结构Hessians的MCMM电位可以达到化学精度(1-2 kcal / mol)。我们还将讨论内插能量误差的来源以及提高精度的可能方法。

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