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Dynamical importance of van der Waals saddle and excited potential surface in C(1D)+D2 complex-forming reaction

机译:范德华鞍和激发势面在C(1D)+ D2络合物形成反应中的动力学重要性

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摘要

Encouraged by recent advances in revealing significant effects of van der Waals wells on reaction dynamics, many people assume that van der Waals wells are inevitable in chemical reactions. Here we find that the weak long-range forces cause van der Waals saddles in the prototypical C(1D)+D2 complex-forming reaction that have very different dynamical effects from van der Waals wells at low collision energies. Accurate quantum dynamics calculations on our highly accurate ab initio potential energy surfaces with van der Waals saddles yield cross-sections in close agreement with crossed-beam experiments, whereas the same calculations on an earlier surface with van der Waals wells produce much smaller cross-sections at low energies. Further trajectory calculations reveal that the van der Waals saddle leads to a torsion then sideways insertion reaction mechanism, whereas the well suppresses reactivity. Quantum diffraction oscillations and sharp resonances are also predicted based on our ground- and excited-state potential energy surfaces.
机译:在揭示范德华井对反应动力学的重大影响的最新进展的鼓舞下,许多人认为范德华井在化学反应中是不可避免的。在这里,我们发现弱的远程力会在原型C( 1 D)+ D2形成复合物的反应中引起范德华鞍,该范德华鞍在低碰撞时具有与范德华井不同的动力学效果能量。在具有范德华兹鞍形的高度精确的从头算起的势能表面上进行精确的量子动力学计算,得出的横截面与横梁实验非常吻合,而在较早的范德华兹阱上进行的相同计算得出的横截面要小得多在低能量。进一步的轨迹计算表明,范德华鞍导致扭转然后侧向插入的反应机理,而井则抑制了反应性。还可以根据我们的基态和激发态势能面预测量子衍射振荡和尖锐共振。

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