论文标题

使用外部电场的水滴下方的薄润滑膜的可逆脱水

Reversible Dewetting of Thin Lubricating Films Underneath Aqueous Drops Using External Electric Field

论文作者

Bhatt, Bidisha, Gupta, Shivam, Sumathi, Vasudevan, Chandran, Sivasurender, Khare, Krishnacharya

论文摘要

薄液膜在表面上的稳定性取决于系统的过量自由能,该自由能涉及各种短距离和远程相互作用。在不稳定的条件下,稀薄的液体膜可能会通过旋转,均质或异质成核过程浸入多个小型液滴中。但是,如果可以使用外部刺激来操纵系统的总过量自由能,则可以控制按需薄液膜的稳定性。在这里,我们研究了使用外部电场在湿滑的表面上水滴下方的薄薄润滑膜的可逆脱水过程。施加电压后,稳定的薄润滑膜以与纳米厚的液体膜的旋转露水相同的方式相同。卸下施加的电压后,脱水的液滴扩散,与相邻的液滴融合并再次形成均匀的膜,但是与脱水相比,在重新割断期间花费的时间大不相同。在多个循环中存在侵蚀和重新润湿过程的特征。由于旋转脱水过程的随机性质,最终的脱水模式在多个露水周期上没有显示任何相关性。

The stability of thin liquid films on a surface depends on the excess free energy of the system involving various short-range and long-range interactions. In an unstable condition, thin liquid films may dewet into multiple small-sized droplets via spinodal, homogeneous, or heterogeneous nucleation process. However, if the total excess free energy of the system can be manipulated using an external stimulus, one can control the stability of thin liquid films on demand. Here, we study the reversible dewetting process of thin lubricating films underneath aqueous drops on slippery surfaces using an external electric field. Upon applying voltage, stable thin lubricating films dewet in a manner identical to the spinodal dewetting of nanometer-thick liquid films. Upon removing the applied voltage, the dewetted droplets spread, coalesce with neighboring ones, and form a uniform film again, however the time taken during rewetting is very different compared to dewetting. The characteristic features of both the dewetting and rewetting processes are present over multiple cycles. Due to the random nature of the spinodal dewetting process, the final dewetting pattern does not show any correlation over multiple dewetting cycles.

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