论文标题

限制I中各向异性分子扩散:潜力和密度梯度中小颗粒的转运

Anisotropic molecular diffusion in confinement I: Transport of small particles in potential and density gradients

论文作者

Höllring, Kevin, Baer, Andreas, Vučemilović-Alagić, Nataša, Smith, David M., Smith, Ana-Sunčana

论文摘要

假设:限制的扩散是一个重要的基本问题,对支持液相的应用有重要影响。但是,解决空间依赖的扩散系数(平行且垂直于接口系数)一直是一个常规问题。在接口附近,由于分层局部施加统计漂移,密度波动的变化阻碍了对空间依赖扩散系数的分析。我们假设我们可以根据本地寿命统计数据来得出一个模型,从而在空间上解析界面 - 垂直扩散系数,并扩展使用Smoluchowski方程,以明确说明局部漂移的效果,从而使我们能够在Intercapes in Interscapes in Interfaces in Interfaces in Interfaces in Interfaces in Interfaces in Interfaces。 方法和仿真:介绍了用于计算漂移引起的系统误差的系统切片与扩散率的局部交叉时间之间的分析关系。该方法在大量水的分子动力学模拟上进行了验证,并应用于缝隙孔中的水的模拟。 研究结果:在对大体液体进行验证之后,我们清楚地证明了界面扩散系数的各向异性性质。扩散性的显着空间变化与界面诱导的结构相关,但不能完全归因于局部密度波动引起的漂移。

Hypothesis: Diffusion in confinement is an important fundamental problem with significant implications for applications of supported liquid phases. However, resolving the spatially dependent diffusion coefficient, parallel and perpendicular to interfaces, has been a standing issue. In the vicinity of interfaces, density fluctuations as a consequence of layering locally impose statistical drift, which impedes the analysis of spatially dependent diffusion coefficients even further. We hypothesise, that we can derive a model to spatially resolve interface-perpendicular diffusion coefficients based on local lifetime statistics with an extension to explicitly account for the effect of local drift using the Smoluchowski equation, that allows us to resolve anisotropic and spatially dependent diffusivity landscapes at interfaces. Methods and simulations: An analytic relation between local crossing times in system slices and diffusivity as well as an explicit term for calculating drift-induced systematic errors is presented. The method is validated on Molecular Dynamics simulations of bulk water and applied to simulations of water in slit pores. Findings: After validation on bulk liquids, we clearly demonstrate the anisotropic nature of diffusion coefficients at interfaces. Significant spatial variations in the diffusivities correlate with interface-induced structuring but cannot be solely attributed to the drift induced by local density fluctuations.

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