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对静止水滴的尺寸依赖性润湿行为进行直接且准确的测量。

Direct and accurate measurement of size dependent wetting behaviors for sessile water droplets.

作者信息

Park Jimin, Han Hyung-Seop, Kim Yu-Chan, Ahn Jae-Pyeong, Ok Myoung-Ryul, Lee Kyung Eun, Lee Jee-Wook, Cha Pil-Ryung, Seok Hyun-Kwang, Jeon Hojeong

机构信息

Center for Biomaterials, Korea Institute of Science &Technology, Seoul, 02792, South Korea.

Korea University of Science and Technology, Daejeon, 34113, South Korea.

出版信息

Sci Rep. 2015 Dec 14;5:18150. doi: 10.1038/srep18150.

Abstract

The size-dependent wettability of sessile water droplets is an important matter in wetting science. Although extensive studies have explored this problem, it has been difficult to obtain empirical data for microscale sessile droplets at a wide range of diameters because of the flaws resulting from evaporation and insufficient imaging resolution. Herein, we present the size-dependent quantitative change of wettability by directly visualizing the three phase interfaces of droplets using a cryogenic-focused ion beam milling and SEM-imaging technique. With the fundamental understanding of the formation pathway, evaporation, freezing, and contact angle hysteresis for sessile droplets, microdroplets with diameters spanning more than three orders of magnitude on various metal substrates were examined. Wetting nature can gradually change from hydrophobic at the hundreds-of-microns scale to super-hydrophobic at the sub-μm scale, and a nonlinear relationship between the cosine of the contact angle and contact line curvature in microscale water droplets was demonstrated. We also showed that the wettability could be further tuned in a size-dependent manner by introducing regular heterogeneities to the substrate.

摘要

固着水滴的尺寸依赖性润湿性是润湿科学中的一个重要问题。尽管已有广泛研究探讨了这个问题,但由于蒸发和成像分辨率不足所导致的缺陷,很难在很宽的直径范围内获取微尺度固着水滴的实验数据。在此,我们通过使用低温聚焦离子束铣削和扫描电子显微镜成像技术直接观察水滴的三相界面,展示了润湿性的尺寸依赖性定量变化。基于对固着水滴的形成途径、蒸发、冻结和接触角滞后的基本理解,我们研究了在各种金属基底上直径跨越三个数量级以上的微滴。润湿性可以从数百微米尺度的疏水性逐渐转变为亚微米尺度的超疏水性,并且证明了微尺度水滴的接触角余弦与接触线曲率之间存在非线性关系。我们还表明,通过在基底上引入规则的不均匀性,可以进一步以尺寸依赖的方式调节润湿性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ded9/4677463/d299da219a2b/srep18150-f1.jpg

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