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力的纳米级行为与宏观表面润湿性的相关性。

Correlation of nanoscale behaviour of forces and macroscale surface wettability.

机构信息

NUSNNI-NanoCore, National University of Singapore (NUS), Singapore 117411.

Electrochemical Energy Laboratory, Massachusetts Institute of Technology, 77 Massachusetts Ave, Cambridge, MA 02139, USA.

出版信息

Nanoscale. 2016 Aug 25;8(34):15597-603. doi: 10.1039/c6nr02076c.

Abstract

In this manuscript, we demonstrate a method based on atomic force microscopy which enables local probing of surface wettability. The maximum pull-off force, obtained from force spectroscopy shows a remarkable correlation with the macroscopically observed water contact angle, measured over a wide variety of surfaces starting from hydrophilic, all the way through to hydrophobic ones. This relationship, consequently, facilitates the establishment of a universal behaviour. The adhesion forces scale with the polar component of surface energy. However, no such relation could be established with the dispersive component. Hence, we postulate that the force(s) which enable us to correlate the force spectroscopy data measured on the nanoscale to the macroscopic contact angle are primarily arising from electrostatic-dipole-dipole interactions at the solid-liquid interface. London forces play less of a role. This effect in is line with density functional theory (DFT) calculations suggesting a higher degree of hydroxylation of hydrophilic surfaces. This result shows that molecular simulations and measurements on an atomic scale can be extrapolated to macroscopic surface wetting problems.

摘要

在本文中,我们展示了一种基于原子力显微镜的方法,该方法能够实现对表面润湿性的局部探测。从亲水到疏水,通过对各种表面进行测量,从力谱中获得的最大拔出力与宏观观察到的水接触角之间存在显著的相关性。这种关系,因此,促进了普遍行为的建立。粘附力与表面能的极性分量成正比。然而,与分散分量之间没有建立这种关系。因此,我们假设,使我们能够将在纳米尺度上测量的力谱数据与宏观接触角相关联的力主要来自于固液界面处的静电偶极力。伦敦力的作用较小。这种效应与密度泛函理论(DFT)计算一致,表明亲水表面的羟基化程度更高。这一结果表明,分子模拟和原子尺度上的测量可以外推到宏观表面润湿问题。

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