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Convex Nanobending at a Moving Contact Line: The Missing Mesoscopic Link in Dynamic Wetting

机译:在移动接触线上的凸纳米弯曲:动态润湿中缺少介观链接

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摘要

The morphological information on the very front of a spreading liquid is fundamental to our understanding of dynamic wetting. Debate has lasted for years concerning the nanoscopic local angles and the transition from them to the macroscopic counterpart, theta(D). This study of nonvolatile liquids analyzes the interface profile near the advancing contact line using an advanced atomic force microscopy. The interface is found following the macroscopic profile until bending in a convex profile around 20 nm from the substrate. This shoe-tip-like feature is common in partially wetting while absent for completely wetting, and its curvature varies with advancing speed. The observation ends the long-standing debate about the nanoscopic contact angles and their speed dependency. The convex nanobending provides a mesoscopic link and effectively complicates the dynamic wetting behaviors.
机译:扩散液体最前端的形态信息是我们了解动态润湿的基础。关于纳米级局部角以及从它们到宏观对应角theta(D)的争论已经持续了多年。这项对非挥发性液体的研究使用先进的原子力显微镜分析了前进接触线附近的界面分布。发现该界面遵循宏观轮廓,直到弯曲弯曲成距基板约20 nm的轮廓为止。这种鞋尖状的特征在部分润湿而不是完全润湿时很常见,并且其曲率随前进速度而变化。这一发现结束了有关纳米接触角及其速度依赖性的长期争论。凸的纳米弯曲提供了介观的连接,并有效地使动态润湿行为复杂化。

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