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纳米流体动力学:光滑表面上的本征流动边界条件。

Nanohydrodynamics: the intrinsic flow boundary condition on smooth surfaces.

作者信息

Cottin-Bizonne Cécile, Steinberger Audrey, Cross Benjamin, Raccurt Olivier, Charlaix Elisabeth

机构信息

Université de Lyon, Lyon, France.

出版信息

Langmuir. 2008 Feb 19;24(4):1165-72. doi: 10.1021/la7024044.

Abstract

A dynamic surface force apparatus is used to determine the intrinsic flow boundary condition of two simple liquids, water and dodecane, on various smooth surfaces. We demonstrate the impact of experimental errors and data analysis on the accuracy of slip length determination. In all systems investigated, the dissipation is described by a well-defined boundary condition accounting for a whole range of separation, film thickness, and shear rate. A no-slip boundary condition is found in all wetting situations. On strongly hydrophobic surfaces, water undergoes finite slippage that increases with hydrophobicity. We also compare the relative influence of hydrophobicity and liquid viscosity on boundary flow by using water-glycerol mixtures with similar wetting properties.

摘要

一种动态表面力装置用于确定水和十二烷这两种简单液体在各种光滑表面上的本征流动边界条件。我们展示了实验误差和数据分析对滑移长度测定精度的影响。在所研究的所有系统中,耗散由一个明确的边界条件描述,该条件考虑了整个分离范围、膜厚度和剪切速率。在所有润湿情况下都发现了无滑移边界条件。在强疏水表面上,水会发生有限的滑移,且滑移随疏水性增加。我们还通过使用具有相似润湿性质的水 - 甘油混合物来比较疏水性和液体粘度对边界流动的相对影响。

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