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从体相到界面的纳流控学。

Nanofluidics, from bulk to interfaces.

机构信息

Laboratoire de Physique de la Matière Condensée et des Nanostructures, Université Lyon 1 and CNRS, UMR 5586, 43 Bvd. du 11 Nov. 1918, 69622 Villeurbanne Cedex, France.

出版信息

Chem Soc Rev. 2010 Mar;39(3):1073-95. doi: 10.1039/b909366b. Epub 2009 Dec 1.

Abstract

Nanofluidics has emerged recently in the footsteps of microfluidics, following the quest for scale reduction inherent to nanotechnologies. By definition, nanofluidics explores transport phenomena of fluids at nanometer scales. Why is the nanometer scale specific? What fluid properties are probed at nanometric scales? In other words, why does 'nanofluidics' deserve its own brand name? In this critical review, we will explore the vast manifold of length scales emerging for fluid behavior at the nanoscale, as well as the associated mechanisms and corresponding applications. We will in particular explore the interplay between bulk and interface phenomena. The limit of validity of the continuum approaches will be discussed, as well as the numerous surface induced effects occurring at these scales, from hydrodynamic slippage to the various electro-kinetic phenomena originating from the couplings between hydrodynamics and electrostatics. An enlightening analogy between ion transport in nanochannels and transport in doped semi-conductors will be discussed (156 references).

摘要

纳米流体力学是在微流体力学的基础上发展起来的,其研究方向是纳米技术固有的尺度缩减。从定义上讲,纳米流体力学研究的是纳米尺度下流体的输运现象。为什么纳米尺度是特殊的?在纳米尺度下探测到的流体性质是什么?换句话说,为什么“纳米流体力学”值得拥有自己的品牌名称?在这篇评论中,我们将探讨在纳米尺度下流体行为所涉及的广泛的长度尺度,以及相关的机制和相应的应用。我们将特别探讨体相和界面现象之间的相互作用。我们将讨论连续体方法的有效性限制,以及在这些尺度上发生的许多表面诱导效应,从流体力学滑移到各种由流体力学和静电学之间的耦合产生的电动力学现象。我们将讨论纳米通道中的离子输运和掺杂半导体中的输运之间的一个启发性类比(156 篇参考文献)。

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