首页> 外文期刊>Journal of physical chemistry letters >Quantum Roaming in the Complex-Forming Mechanism of the Reactions of OH with Formaldehyde and Methanol at Low Temperature and Zero Pressure: A Ring Polymer Molecular Dynamics Approach
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Quantum Roaming in the Complex-Forming Mechanism of the Reactions of OH with Formaldehyde and Methanol at Low Temperature and Zero Pressure: A Ring Polymer Molecular Dynamics Approach

机译:在低温下用甲醛和甲醇的反应的复合物成形机制中的量子漫游,零压力:环聚合物分子动力学方法

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The quantum dynamics of the title reactions are studied using the ring polymer molecular dynamics (RPMD) method from 20 to 1200 K using recently proposed full dimensional potential energy surfaces which include long-range dipole dipole interactions. A V-shaped dependence of the reaction rate constants is found with a minimum at 200300 K, in rather good agreement with the current experimental data. For temperatures above 300 K the reaction proceeds following a direct H-abstraction mechanism. However, below 100 K the reaction proceeds via organic-molecule center dot center dot center dot OH collision complexes, with very long lifetimes, longer than 10(-7) s, associated with quantum roaming arising from the inclusion of quantum effects by the use of RPMD. The long lifetimes of these complexes are comparable to the time scale of the tunnelling to form reaction products. These complexes are formed at zero pressure because of quantum effects and not only at high pressure as suggested by transition state theory (TST) calculations for OH + methanol and other OH reactions. The zero-pressure rate constants reproduce quite well measured ones below 200 K, and this agreement opens the question of how important the pressure effects on the reaction rate constants are, as implied in TST-like formalisms. The zero-pressure mechanism is applicable only to very low gas density environments, such as the interstellar medium, which are not repeatable by experiments.
机译:使用最近提出的全尺寸潜在能量表面使用20至1200k的环聚合物分子动力学(RPMD)方法研究标题反应的量子动态。反应速率常数的V形依赖性在200300 k的情况下,与目前的实验数据相当良好的协议中的最小值。对于高于300k的温度,反应在直接的H抽象机制之后进行。然而,低于100K的反应通过有机分子中心点中心点中心点OH碰撞复合物进行,寿命长度超过10(-7),与使用量子效应引起的量子漫游相关rpmd。这些配合物的长时间寿命与隧道形成反应产物的时间等级相当。由于量子效应,这些复合物在零压力下形成,并且不仅在高压下由OH +甲醇和其他OH反应的过渡状态理论(TST)计算的高压。零压力常数常量再现出良好的测量值,低于200 k,并且本协议将根据TST形状中暗示的反应速率常数对反应速率常数的重要作用进行了问题。零压力机构仅适用于非常低的气密环境,例如间隙介质,其不通过实验可重复。

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