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首页> 外文期刊>The Journal of Chemical Physics >Dynamic isotope effect on the product energy partitioning in CH2OH+-> CHO++H-2
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Dynamic isotope effect on the product energy partitioning in CH2OH+-> CHO++H-2

机译:动态同位素对CH2OH +-> CHO ++ H-2中产物能分配的影响

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摘要

The deuterium isotope effect on the product energy partitioning in the title reaction was investigated both experimentally and theoretically. The measured kinetic energy release (KER) showed a significant dependence on the position of deuteration. A reliable potential energy surface of the reaction was constructed from ab initio results using the recently developed interpolation algorithm. The classical trajectory calculation on this surface well reproduced the experimental finding. Close inspection of the potential energy surface revealed that the isotope effect on KER and the product rotations arose from the alteration of the symmetry of the reaction path near the transition state induced by the mass change upon isotopic substitution. The product vibrations were found to be affected by the change in the coupling constants which also arose from the mass-dependent change in the reaction path. Possibility of the quantum mechanical tunneling was also considered. Tunneling-corrected classical trajectory results were in excellent agreement with the experimental ones, indicating that the reaction proceeds via barrier penetration below the threshold. (C) 1998 American Institute of Physics. [S0021-9606(98)03137-7]. [References: 44]
机译:实验和理论研究了氘同位素对标题反应中产物能量分配的影响。测得的动能释放(KER)显示出对氘代位置的显着依赖性。使用最新开发的插值算法,从头算结果可以构建可靠的反应势能面。该表面上的经典轨迹计算很好地再现了实验结果。对势能表面的仔细检查表明,对同位素和产物旋转的同位素效应是由同位素取代引起的质量变化所引起的接近过渡态的反应路径对称性改变引起的。发现产物振动受偶合常数变化的影响,偶合常数的变化也是由反应路径中质量相关的变化引起的。还考虑了量子力学隧穿的可能性。隧道校正的经典轨迹结果与实验结果非常吻合,表明反应通过低于阈值的势垒穿透进行。 (C)1998美国物理研究所。 [S0021-9606(98)03137-7]。 [参考:44]

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