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量子对氢和氘在微孔材料中的吸附及扩散的影响。

Quantum effects on adsorption and diffusion of hydrogen and deuterium in microporous materials.

作者信息

Kumar A V Anil, Jobic Hervé, Bhatia Suresh K

机构信息

Department of Chemical Engineering, The University of Queensland, Brisbane, QLD 4072, Australia.

出版信息

J Phys Chem B. 2006 Aug 24;110(33):16666-71. doi: 10.1021/jp063034n.

Abstract

Monte Carlo and molecular dynamics simulations and neutron scattering experiments are used to study the adsorption and diffusion of hydrogen and deuterium in zeolite Rho in the temperature range of 30-150 K. In the molecular simulations, quantum effects are incorporated via the Feynman-Hibbs variational approach. We suggest a new set of potential parameters for hydrogen, which can be used when Feynman-Hibbs variational approach is used for quantum corrections. The dynamic properties obtained from molecular dynamics simulations are in excellent agreement with the experimental results and show significant quantum effects on the transport at very low temperature. The molecular dynamics simulation results show that the quantum effect is very sensitive to pore dimensions and under suitable conditions can lead to a reverse kinetic molecular sieving with deuterium diffusing faster than hydrogen.

摘要

蒙特卡罗模拟、分子动力学模拟以及中子散射实验被用于研究30 - 150 K温度范围内氢和氘在Rho沸石中的吸附与扩散。在分子模拟中,通过费曼 - 希布斯变分法纳入量子效应。我们提出了一组新的氢的势能参数,当使用费曼 - 希布斯变分法进行量子修正时可以使用。从分子动力学模拟获得的动力学性质与实验结果高度吻合,并且在极低温下对输运显示出显著的量子效应。分子动力学模拟结果表明,量子效应对孔径尺寸非常敏感,在合适的条件下会导致氘比氢扩散得更快的逆动力学分子筛分现象。

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