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具有附加压力的颗粒-表面毛细力。

Particle-surface capillary forces with disjoining pressure.

作者信息

Lubarsky Gennady V, Davidson Marcus R, Bradley Robert H

机构信息

Advanced Materials and Biomaterials Research Centre, School of Engineering, The Robert Gordon University, Aberdeen, UK.

出版信息

Phys Chem Chem Phys. 2006 Jun 7;8(21):2525-30. doi: 10.1039/b602005d. Epub 2006 Apr 28.

Abstract

A new, atomic force microscopy (AFM) based experimental setup for the continuous acquisition of friction force data as a function of humidity has been developed. The current model of interactions between wet contacts under the influence of capillary effects, has been amended to include a vertical component due to the disjoining pressure and takes into account the influence of liquid films adsorbed on the surface. This is a 'switching' model, i.e. the contact between nanometer-sized sphere and a flat surface can exist in two distinct states due to capillary bridge formation/destruction as the humidity is varied. The model has been qualitatively verified on samples of differing wettability produced by UV-ozone treatment of polystyrene (PS). Results of AFM analysis of the friction vs. vapor pressure curves collected from the surface are presented. Correlation between important surface properties such as wettability, adsorption, and contact angle and friction force under varying humidity were found and discussed.

摘要

已开发出一种基于原子力显微镜(AFM)的新型实验装置,用于连续获取摩擦力数据作为湿度的函数。当前关于毛细作用影响下湿接触之间相互作用的模型已得到修正,以纳入由于分离压力产生的垂直分量,并考虑了吸附在表面的液膜的影响。这是一个“切换”模型,即由于湿度变化导致毛细桥的形成/破坏,纳米级球体与平面之间的接触可以存在两种不同状态。该模型已在通过紫外线臭氧处理聚苯乙烯(PS)制备的不同润湿性样品上得到定性验证。给出了从表面收集的摩擦力与蒸气压曲线的AFM分析结果。发现并讨论了诸如润湿性、吸附和接触角等重要表面性质与不同湿度下摩擦力之间的相关性。

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