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Vapor bridges between solid substrates in the presence of the contact line pinning effect: Stability and capillary force

机译:在存在接触线钉扎效应的情况下,固体基材之间的蒸汽桥:稳定性和毛细作用力

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摘要

In this work, we focus on investigating how nanobubbles mediate long-range interaction between neighboring solid substrates in the presence of the contact line pinning effect caused by surface heterogeneities. Using the constrained lattice density functional theory (LDFT), we prove that the nanobubbles, which take the form of vapor bridges here, are stabilized by the pinning effect if the separation between two substrates is less than a critical distance. The critical distance strongly depends on the chemical potential (i.e., the degree of saturation) and could become extremely long at a special chemical potential. Moreover, under the pinning effect, the substrate chemistry only determines the stability of the vapor bridges and the range of the capillary force, but has less influences on the magnitude of the capillary force, indicating that the substrate chemistry or the apparent contact angle for droplets or bubbles on the substrates is no longer a direct parameter to determine the magnitude of capillary force. A qualitative analysis for the two dimensional vapor bridges by considering the feedback mechanism can explain the results from the LDFT calculations. Published by AIP Publishing.
机译:在这项工作中,我们专注于研究在存在由表面异质性引起的接触线钉扎效应的情况下,纳米气泡如何介导相邻固体基质之间的远程相互作用。使用受约束的晶格密度泛函理论(LDFT),我们证明了如果两个基板之间的距离小于临界距离,则通过钉扎效应可以使此处呈蒸汽桥形式的纳米气泡稳定。临界距离在很大程度上取决于化学势(即饱和度),并且在特殊化学势下可能变得非常长。此外,在钉扎效应下,基质化学物质仅决定蒸气桥的稳定性和毛细作用力的范围,而对毛细作用力大小​​的影响较小,表明基质化学物质或液滴的表观接触角基材上的气泡或气泡不再是确定毛细作用力大小​​的直接参数。通过考虑反馈机制对二维蒸气桥进行定性分析可以解释LDFT计算的结果。由AIP Publishing发布。

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