首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Direct dynamics trajectory study of the reaction of formaldehyde cation with D-2: Vibrational and zero-point energy effects on quasiclassical trajectories
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Direct dynamics trajectory study of the reaction of formaldehyde cation with D-2: Vibrational and zero-point energy effects on quasiclassical trajectories

机译:甲醛阳离子与D-2反应的直接动力学轨迹研究:准经典轨迹的振动和零点能量影响

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Quasiclassical, direct dynamics trajectories have been used to study the reaction of formaldehyde cation with molecular hydrogen, simulating the conditions in an experimental study of H2CO+ vibrational effects on this reaction. Effects of five different H2CO+ modes were probed, and we also examined different approaches to treating zero-point energy in quasiclassical trajectories. The calculated absolute cross-sections are in excellent agreement with experiments, and the results provide insight into the reaction mechanism, product scattering behavior, and energy disposal, and how they vary with impact parameter and reactant state. The reaction is sharply orientation-dependent, even at high collision energies, and both trajectories and experiment find that H2CO+ vibration inhibits reaction. On the other hand, the trajectories do not reproduce the anomalously strong effect Of nu(2)(+) (the CO stretch). The origin of the discrepancy and approaches for minimizing such problems in quasiclassical trajectories are discussed.
机译:准经典的直接动力学轨迹已用于研究甲醛阳离子与分子氢的反应,模拟了H2CO +对该反应的振动效应的实验研究条件。探究了五种不同的H2CO +模式的影响,我们还研究了在准经典轨迹中处理零点能量的不同方法。计算出的绝对截面与实验非常吻合,结果提供了对反应机理,产物散射行为和能量处置以及它们如何随冲击参数和反应物状态变化的深刻见解。即使在高碰撞能量下,该反应也与取向密切相关,并且轨迹和实验均发现,H2CO +振动会抑制反应。另一方面,这些轨迹不会重现nu(2)(+)的异常强烈效果(CO拉伸)。讨论了差异的起源以及在准经典轨迹中最小化此类问题的方法。

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