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Rotation dynamics of 2-methyl butane and n-pentane in MCM-22 zeolite: a molecular dynamics simulation study

机译:MCM-22分子筛中2-甲基丁烷和正戊烷的旋转动力学:分子动力学模拟研究

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摘要

Molecular dynamics (MD) simulations have been performed to investigate the rotational diffusive motion for 2-methyl butane (2-MeC4) and n-pentane (n-C5) in the cages of MCM-22 zeolite from 200-340 K. The rotation intermediate scattering function I_R (Q,t) for 2-MeC4 and n-C5 confined in the supercages of MCM-22 was calculated. The dynamic scattering functions S_(inc)(Q,ω) obtained via Fourier transformation of this intermediate scattering function are in good agreement with those of quasi-elastic neutron scattering experiments. The rotational intermediate scattering functions of 2-MeC4 decay more rapidly than those of n-C5 before 1.0 ps. In the longer time region, the rotational intermediate scattering functions of both molecules intersect. It is shown that n-C5 molecules move more easily from supercage to supercage compared to 2-MeC4, rotating for a longer time in the confinement of the MCM-22 supercage.
机译:已经进行了分子动力学(MD)模拟以研究200-340 K范围内MCM-22沸石笼中2-甲基丁烷(2-MeC4)和正戊烷(n-C5)的旋转扩散运动。计算了限制在MCM-22超级笼中的2-MeC4和n-C5的中间散射函数I_R(Q,t)。通过该中间散射函数的傅立叶变换获得的动态散射函数S_(inc)(Q,ω)与准弹性中子散射实验的动力学散射函数非常吻合。在1.0 ps之前,2-MeC4的旋转中间散射函数比n-C5的旋转中间散射函数衰减更快。在较长的时间范围内,两个分子的旋转中间散射功能相交。结果表明,与2-MeC4相比,n-C5分子在超笼中移动更容易,在限制MCM-22超笼中旋转的时间更长。

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