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首页> 外文期刊>The Journal of Chemical Physics >A nine-dimensional ab initio global potential energy surface for the H_2O~+ + H_2 → H_3O~+ + H reaction
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A nine-dimensional ab initio global potential energy surface for the H_2O~+ + H_2 → H_3O~+ + H reaction

机译:H_2O〜+ + H_2→H_3O〜+ + H反应的9维从头算全局势能面

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摘要

An accurate full-dimensional global potential energy surface (PES) is developed for the title reaction. While the long-range interactions in the reactant asymptote are represented by an analytical expression, the interaction region of the PES is fit to more than 81 000 of ab initio points at the UCCSD(T)-F12b/AVTZ level using the permutation invariant polynomial neural network approach. Fully symmetric with respect to permutation of all four hydrogen atoms, the PES provides a faithful representation of the ab initio points, with a root mean square error of 1.8 meV or 15 cm~(-1). The reaction path for this exoergic reaction features an attractive and barrierless entrance channel, a submerged saddle point, a shallow H_4O~+ well, and a barrierless exit channel. The rate coefficients for the title reaction and kinetic isotope effect have been determined on this PES using quasi-classical trajectories, and they are in good agreement with available experimental data. It is further shown that the H_2O~+ rotational enhancement of reactivity observed experimentally can be traced to the submerged saddle point. Using our recently proposed Sudden Vector Projection model, we demonstrate that a rotational degree of freedom of the H_2O~+ reactant is strongly coupled with the reaction coordinate at this saddle point, thus unraveling the origin of the pronounced mode specificity in this reaction.
机译:为标题反应开发了一个精确的全维全局势能面(PES)。虽然反应渐近线中的远距离相互作用由一个解析表达式表示,但使用置换不变多项式,PES的相互作用区域适合UCCSD(T)-F12b / AVTZ级别的超过81000的从头算点神经网络方法。关于所有四个氢原子的排列完全对称,PES提供了从头算点的忠实表示,均方根误差为1.8 meV或15 cm〜(-1)。散热反应的反应路径具有吸引人的无障碍入口通道,浸入式鞍点,浅H_4O〜+井和无障碍出口通道。已经使用准经典轨迹在该PES上确定了标题反应和动力学同位素效应的速率系数,并且与可用的实验数据高度吻合。进一步表明,实验观察到的H_2O〜+旋转反应性的提高可以追溯到淹没鞍点。使用我们最近提出的“突然矢量投影”模型,我们证明了H_2O〜+反应物的旋转自由度在此鞍点处与反应坐标紧密相关,从而阐明了该反应中明显的模式特异性的起源。

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