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软排斥相互作用对准一维通道中粒子扩散的影响:一种跳跃时间方法。

The effect of soft repulsive interactions on the diffusion of particles in quasi-one-dimensional channels: A hopping time approach.

作者信息

Ahmadi Sheida, Schmidt Marina, Spiteri Raymond J, Bowles Richard K

机构信息

Department of Chemistry, University of Saskatchewan, Saskatoon, Saskatchewan S7N 5C9, Canada.

Department of Computer Science, University of Saskatchewan, Saskatoon, Saskatchewan S7N 5C9, Canada.

出版信息

J Chem Phys. 2019 Jun 14;150(22):224501. doi: 10.1063/1.5100544.

Abstract

Fluids confined to quasi-one-dimensional channels exhibit a dynamic crossover from single file diffusion to normal diffusion as the channel becomes wide enough for particles to hop past each other. In the crossover regime, where hopping events are rare, the diffusion coefficient in the long time limit can be related to a hopping time that measures the average time it takes for a particle to escape the local cage formed by its neighbors. In this work, we show that a transition state theory (TST) that calculates the free energy barrier for two particles attempting to pass each other in the small system isobaric ensemble is able to quantitatively predict the hopping time in a system of two-dimensional soft repulsive disks [U(r)=(σ/r)] confined to a hard walled channel over a range of channel radii and degrees of particle softness measured in terms of 1/α. The free energy barrier exhibits a maximum at intermediate values of α that moves to smaller values of 1/α (harder particles) as the channel becomes narrower. However, the presence of the maximum is only observed in the hopping times for wide channels because the interaction potential dependence of the kinetic prefactor plays an increasingly important role for narrower channels. We also begin to explore how our TST approach can be used to optimize and control dynamics in confined quasi-one-dimensional fluids.

摘要

当通道变得足够宽,使得粒子能够相互跳过彼此时,限制在准一维通道中的流体表现出从单文件扩散到正常扩散的动态转变。在转变区域,即跳跃事件很少发生的区域,长时间极限下的扩散系数可以与一个跳跃时间相关,该跳跃时间衡量了粒子逃离由其相邻粒子形成的局部牢笼所需的平均时间。在这项工作中,我们表明,一种过渡态理论(TST)能够定量预测二维软排斥圆盘[U(r)=(σ/r)]系统在一系列通道半径和以1/α衡量的粒子软度下,限制在硬壁通道中时两个粒子试图相互通过的自由能垒。自由能垒在α的中间值处出现最大值,随着通道变窄,该最大值向1/α的较小值(更硬的粒子)移动。然而,只有在宽通道的跳跃时间中才观察到最大值的存在,因为动力学前置因子对相互作用势的依赖性对于较窄的通道起着越来越重要的作用。我们还开始探索如何使用我们的TST方法来优化和控制限制在准一维流体中的动力学。

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