Physics of Complex Fluids, IMPACT and MESA+ Institute, Department of Science and Technology, University of Twente, P.O. Box 217, 7500 AE Enschede, The Netherlands.
Langmuir. 2011 May 3;27(9):5340-6. doi: 10.1021/la104628q. Epub 2011 Apr 5.
In this work, the equilibrium morphology of a drop on a sphere is analyzed as a function of the contact angle and drop volume experimentally and with analytical effective interfacial energy calculations. Experimentally, a drop on a sphere geometry is realized in an oil bath by placing a water drop on a sphere coated with a dielectric, of which the radii of curvature are comparable with that of the drop. Electrowetting (EW) is used to change the contact angle of the water drop on the sphere. To validate the applicability of EW and the Lippman-Young equation on nonflat surfaces, we systematically investigate the response of the contact angle to the applied voltage (EW response) for various drop volumes and compared the results with the case of a planar surface. The effective interfacial energy of two competing morphologies, namely, the spherically symmetric "completely engulfing" and "partially engulfing" morphologies are calculated analytically. The analytical calculations are then compared to the experimental results to confirm which morphology is energetically more favored for a given contact angle and drop volume. Our findings indicate that the "partially engulfing" morphology is always the energetically more favorable morphology.
在这项工作中,通过实验和分析有效界面能计算,分析了作为接触角和液滴体积函数的球体上液滴的平衡形态。实验中,通过在涂有介电材料的球体上放置水滴,在油浴中实现球体上液滴的几何形状,其中曲率半径与液滴的曲率半径相当。通过电润湿(EW)来改变球体上水滴的接触角。为了验证 EW 和 Lippman-Young 方程在非平坦表面上的适用性,我们系统地研究了接触角对各种液滴体积施加电压的响应(EW 响应),并将结果与平面情况进行了比较。通过分析计算,得到了两种竞争形态的有效界面能,即球对称的“完全包裹”和“部分包裹”形态。然后将分析计算结果与实验结果进行比较,以确定给定接触角和液滴体积下哪种形态在能量上更有利。我们的研究结果表明,“部分包裹”形态总是在能量上更有利的形态。