CAS Key Laboratory of Bio-inspired Materials and Interfacial Sciences, Technical Institute of Physics and Chemistry, Chinese Academy of Sciences, Future Technology College, University of Chinese Academy of Sciences, Zhongguancun East Road, 29, 100190, Beijing, P. R. China.
CAS Key Laboratory of Green Printing, Institute of Chemistry, Chinese Academy of Sciences, Zhongguancun North First Street 2, 100190, Beijing, P. R. China.
Adv Mater. 2018 Feb;30(8). doi: 10.1002/adma.201703838. Epub 2018 Jan 9.
The ballistic ejection of liquid drops by electrostatic manipulating has both fundamental and practical implications, from raindrops in thunderclouds to self-cleaning, anti-icing, condensation, and heat transfer enhancements. In this paper, the ballistic jumping behavior of liquid drops from a superhydrophobic surface is investigated. Powered by the repulsion of the same kind of charges, water drops can jump from the surface. The electrostatic acting time for the jumping of a microliter supercooled drop only takes several milliseconds, even shorter than the time for icing. In addition, one can control the ballistic jumping direction precisely by the relative position above the electrostatic field. The approach offers a facile method that can be used to manipulate the ballistic drop jumping via an electrostatic field, opening the possibility of energy efficient drop detaching techniques in various applications.
液滴的电操控抛射具有基础科学和实际应用两方面的重要意义,这涵盖了从雷雨中的雨滴到自清洁、防冰、冷凝和传热强化等多个领域。本文研究了超疏水表面上液滴的抛射跳跃行为。在同种电荷斥力的作用下,水滴可以从表面弹起。微升级过冷液滴的跳跃所需要的静电作用时间仅为数毫秒,甚至比结冰所需的时间还要短。此外,通过调整在电场上方的相对位置,可以精确控制液滴抛射的方向。该方法为通过电场操控液滴抛射跳跃提供了一种简便的途径,有望在各种应用中实现节能型液滴去除技术。