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Quantum dynamics study of H-2+CN -> HCN+H reaction in full dimensions

机译:H-2 + CN-> HCN + H反应的量子动力学全尺寸研究

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Time-dependent (TD) quantum dynamics calculation for the title reaction has been carried out in full mathematical (six) dimensions on a new potential energy surface (denoted TSH3). Our numerical calculation shows that as far as total reaction probabilities and cross sections are concerned, the CN vibration behaves like a spectator bond when both reagents are at ground vibrational state. The vibrational excitation of CN slightly decreases the reaction probability and cross section while vibrational excitation of H-2 considerably enhances the reaction probability and cross section. The reaction probability is enhanced by excitations of H-2 rotation and more so of CN rotation. Overall, the reaction proceeds by a direct abstraction path without contribution from the insertion process. Comparison of our calculated rate constant with experimental measurements indicates that the effective barrier of the TSH3 PES for the title reaction is perhaps too high by about 0.3 kcal/mol. (C) 1998 American Institute of Physics. [S0021-9606(98)00409-7]. [References: 31]
机译:标题反应的时变(TD)量子动力学计算已经在一个新的势能面(表示为TSH3)上以完全数学(六个)维度进行。我们的数值计算表明,就总反应概率和横截面而言,当两种试剂都处于地面振动状态时,CN振动的行为就像一个旁观者键。 CN的振动激发稍微降低了反应概率和横截面,而H-2的振动激发显着提高了反应概率和横截面。 H-2旋转的激发和CN旋转的激发都增加了反应概率。总的来说,反应是通过直接的抽象路径进行的,而没有插入过程的影响。我们计算出的速率常数与实验测量值的比较表明,TSH3 PES对标题反应的有效屏障可能太高了约0.3 kcal / mol。 (C)1998美国物理研究所。 [S0021-9606(98)00409-7]。 [参考:31]

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