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Equilibrium shapes and locations of axisymmetric, liquid drops on conical, solid surfaces

机译:圆锥形固体表面上轴对称液滴的平衡形状和位置

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Micro- and nano-scale liquid droplets must be precisely placed in proximity to conical solid tips in applications that include AFM tip dip-pen nanolithography. This seemingly simple task is strongly dependent on wetting conditions of the drop on the tip surface. Over a wide range of wetting conditions and drop Volumes, drops can situate far from a conical needle apex at equilibrium, which can hinder the effectiveness of the respective applications. Needle geometry also affects drop location. On a right conical needle, liquid drops that wet the needle surface locate away from the apex. However, by careful consideration of their geometry, needles can be engineered to retain liquid drops near the tip or some other region of interest. In this work, a theoretical model is developed that predicts axisymmetric, equilibrium drop locations and shapes on conical, solid surfaces as a function of drop volume, needle geometry/shape, needle surface wettability (contact angle), liquid surface tension, line tension, and gravity. (c) 2006 Elsevier B.V. All rights reserved.
机译:在包括AFM尖端浸笔式纳米光刻技术的应用中,必须将微级和纳米级液滴精确地放置在锥形固体尖端附近。这个看似简单的任务在很大程度上取决于尖端表面上液滴的润湿条件。在较宽的润湿条件和滴液量范围内,滴液可能会在平衡状态下远离圆锥形针尖,这可能会阻碍相应应用程序的有效性。针的几何形状也会影响液滴的位置。在右锥形针上,滴湿针表面的液滴远离顶点。但是,通过仔细考虑其几何形状,可以将针头设计为将液滴保留在尖端或其他感兴趣区域附近。在这项工作中,建立了一个理论模型,该模型可以预测圆锥形固体表面上的轴对称,平衡液滴位置和形状,这些函数是液滴体积,针头几何形状/形状,针头表面润湿性(接触角),液体表面张力,线张力,和重力。 (c)2006 Elsevier B.V.保留所有权利。

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