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接触角:从液体-固体附着力测量的过去错误到新发展。

Contact angles: From past mistakes to new developments through liquid-solid adhesion measurements.

机构信息

Department of Materials Science and Engineering, Michigan Technological University, Houghton, MI 49931, USA.

出版信息

Adv Colloid Interface Sci. 2019 May;267:1-14. doi: 10.1016/j.cis.2019.02.002. Epub 2019 Mar 4.

Abstract

A contact angle observed for a liquid-solid system is not necessarily a unique value and a few different contact angles need to be carefully considered in relation to liquid spreading, adhesion and phase separation. Despite the conceptual simplicity of the contact angle and over 200 years of investigation, interpretations of experimental contact angles remain controversial, and mistakes are quite common. Here, the physics behind equilibrium contact angles are restated and their misuse in modern literature is briefly discussed. Selected advances made in the 20th century that shaped current interpretations of experimental contact angles are also critically reviewed and evaluated. Understanding of contact angles for liquids on solids has improved in the last two decades and this progress is driven by advanced imaging techniques and improved methodologies in contact angle measurements, often in tandem with direct force measurements for liquid droplets in contact with solids. In our laboratory, a microelectronic balance system is employed to measure the force of liquid droplet spontaneous spreading and the water-solid adhesion forces at different stages of droplet retraction and separation. A microbalance equipped with a camera and data acquisition software measures these forces directly, monitors droplet-surface separation including distances over which the droplet stretches, and collects optical images simultaneously. The images are used to analyze capillary and surface tension forces based on measured droplet dimensions, shapes of surfaces and values of contact angles. These force measurements have significantly furthered our fundamental understanding of advancing, receding and most stable contact angles, and their correlations with adhesion, and are summarized in this review.

摘要

对于固-液体系,观察到的接触角不一定是唯一的值,在涉及液体铺展、附着和相分离时,需要仔细考虑几个不同的接触角。尽管接触角的概念很简单,而且已经研究了 200 多年,但对实验接触角的解释仍然存在争议,而且错误也很常见。在这里,重新阐述了平衡接触角背后的物理原理,并简要讨论了它们在现代文献中的误用。还批判性地回顾和评估了 20 世纪在当前实验接触角解释中所做的一些重要进展。在过去的二十年中,人们对固体上液体接触角的理解有了提高,这一进展是由先进的成像技术和改进的接触角测量方法推动的,通常与直接测量固体接触液滴的力同时进行。在我们的实验室中,采用微电子天平系统测量液滴自发铺展的力以及液滴回缩和分离过程中不同阶段的固-液附着强度。配备摄像头和数据采集软件的微天平可直接测量这些力,监测液滴-表面分离,包括液滴拉伸的距离,并同时收集光学图像。这些图像用于基于测量的液滴尺寸、表面形状和接触角值来分析毛细管力和表面张力。这些力的测量极大地促进了我们对前进接触角、后退接触角和最稳定接触角及其与附着强度的关系的基本理解,本文对此进行了总结。

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