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Tracer diffusion of hard-sphere binary mixtures under nano confinement

机译:纳米约束下硬球二元混合物的示踪扩散

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摘要

The physics of diffusion phenomena in nano- and microchannels has attracted a lot of attention in recent years, due to its close connection with many technological, medical, and industrial applications. In the present paper, we employ a kinetic approach to investigate how the confinement in nanostructured geometries affects the diffusive properties of fluid mixtures and leads to the appearance of properties different from those of bulk systems. In particular, we derive an expression for the friction tensor in the case of a bulk fluid mixture confined to a narrow slit having undulated walls. The boundary roughness leads to a new mechanism for transverse diffusion and can even lead to an effective diffusion along the channel larger than the one corresponding to a planar channel of equivalent section. Finally, we discuss a reduction of the previous equation to a one dimensional effective diffusion equation in which an entropic term encapsulates the geometrical information on the channel shape.
机译:由于其与许多技术,医学和工业应用的紧密联系,近年来,纳米和微通道中扩散现象的物理学引起了很多关注。在本文中,我们采用动力学方法来研究纳米结构几何形状的限制如何影响流体混合物的扩散特性,并导致出现与本体系统不同的特性。特别是,我们将散装流体混合物限制在具有波纹壁的狭窄缝隙中时的摩擦张量表达式。边界粗糙度导致了一种新的横向扩散机制,甚至可能导致沿通道的有效扩散大于对应于等效截面的平面通道的扩散。最后,我们讨论将先前的方程式简化为一维有效扩散方程式,其中一个熵项封装了通道形状上的几何信息。

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