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Direct determination of three-phase contact line properties on nearly molecular scale

机译:直接测定几乎分子尺度的三相接触线特性

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Wetting phenomena in multi-phase systems govern the shape of the contact line which separates the different phases. For liquids in contact with solid surfaces wetting is typically described in terms of contact angle. While in macroscopic systems the contact angle can be determined experimentally, on the molecular scale contact angles are hardly accessible. Here we report the first direct experimental determination of contact angles as well as contact line curvature on a scale of the order of 1nm. For water nucleating heterogeneously on Ag nanoparticles we find contact angles around 15 degrees compared to 90 degrees for the corresponding macroscopically measured equilibrium angle. The obtained microscopic contact angles can be attributed to negative line tension in the order of -10(-10)?J/m that becomes increasingly dominant with increasing curvature of the contact line. These results enable a consistent theoretical description of heterogeneous nucleation and provide firm insight to the wetting of nanosized objects.
机译:多相系统中的润湿现象可以控制与不同阶段分开的接触线的形状。对于与固体表面接触的液体,通常以接触角描述。虽然在宏观系统中,可以通过实验确定接触角,但在分子尺度接触角上几乎无法接近。在这里,我们报告了第一次直接实验确定接触角以及接触线曲率,按1nm的量级。对于在Ag纳米颗粒上的水成核,对于相应的宏观测量的平衡角度,我们发现与90度约为15度的接触角。获得的微观接触角可以归因于负线张力,其量级为-10(-10)?J / M,其随着接触线的曲率的增加而变得越来越多地。这些结果使得具有一致的非均相成核的理论描述,并为纳米型物体的润湿提供了坚实的洞察力。

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