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尺寸依赖性行为与杨氏方程在双组分纳米液滴润湿方面的失效

Size-dependent behavior and failure of young's equation for wetting of two-component nanodroplets.

作者信息

Cheng Yu-Ting, Chu Kang-Ching, Tsao Heng-Kwong, Sheng Yu-Jane

机构信息

Department of Chemical and Materials Engineering, National Central University, Jhongli 320, Taiwan.

Department of Chemical and Materials Engineering, National Central University, Jhongli 320, Taiwan; Department of Physics, National Central University, Jhongli 320, Taiwan.

出版信息

J Colloid Interface Sci. 2020 Oct 15;578:69-76. doi: 10.1016/j.jcis.2020.05.104. Epub 2020 May 30.

Abstract

HYPOTHESIS

For macroscopic systems, the interfacial properties are size-independent and Young's equation is generally valid for smooth substrates. For nanoscale systems, however, size-dependence and failure of Young's equation may emerge.

EXPERIMENTS

The wetting behavior of a nanodroplet containing two miscible liquids on a smooth substrate is explored by many-body dissipative particle dynamics simulations. The size-dependent surface tension of nanofilms is investigated as well.

FINDINGS

It is found that Young's equation is valid for nanodroplets of pure fluids but fails for two-component nanodroplets. The actual contact angle is always larger than the Young's contact angle, and their difference is getting smaller as the composition approaches pure fluids or the compatibility of the mixture is increased. The failure of Young's equation is closely associated with the size-dependent behavior in two-component nanodroplets and nanofilms. As the nanodroplet size is increased, the actual contact angle is found to decline but approaches a constant expected in macroscopic systems. Similarly, as the nanofilm thickness is increased, surface tension decreases and reaches its macroscopic value. The change of surface tension is attributed to the size-dependent surface composition, which is responsible for the failure of Young's equation.

摘要

假设

对于宏观系统,界面性质与尺寸无关,杨氏方程通常适用于光滑基底。然而,对于纳米尺度系统,可能会出现尺寸依赖性以及杨氏方程失效的情况。

实验

通过多体耗散粒子动力学模拟研究了含有两种互溶液体的纳米液滴在光滑基底上的润湿行为。还研究了纳米薄膜的尺寸依赖性表面张力。

发现

发现杨氏方程对纯流体纳米液滴有效,但对双组分纳米液滴失效。实际接触角总是大于杨氏接触角,随着组成接近纯流体或混合物的相容性增加,它们之间的差异变小。杨氏方程的失效与双组分纳米液滴和纳米薄膜中的尺寸依赖性行为密切相关。随着纳米液滴尺寸的增加,发现实际接触角下降,但接近宏观系统中预期的常数。同样,随着纳米薄膜厚度的增加,表面张力降低并达到其宏观值。表面张力的变化归因于尺寸依赖性表面组成,这是杨氏方程失效的原因。

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