Hao Zhentao, Li Weihua
School of Chemical Engineering and Technology, Sun Yat-sen University, Zhuhai 519082, China.
Southern Marine Science and Engineering Guangdong Laboratory (Zhuhai), Sun Yat-sen University, Zhuhai 519082, China.
Nanomaterials (Basel). 2021 Mar 21;11(3):801. doi: 10.3390/nano11030801.
The nepenthes-inspired lubricant-infused surface (LIS) is emerging as a novel repellent surface with self-healing, self-cleaning, pressure stability and ultra-slippery properties. Recently, stimuli-responsive materials to construct a smart LIS have broadened the application of LIS for droplet manipulation, showing great promise in microfluidics. This review mainly focuses on the recent developments towards the droplet manipulation on LIS with different mechanisms induced by various external stimuli, including thermo, light, electric, magnetism, and mechanical force. First, the droplet condition on LIS, determined by the properties of the droplet, the lubricant and substrate, is illustrated. Droplet manipulation via altering the droplet regime realized by different mechanisms, such as varying slipperiness, electrostatic force and wettability, is discussed. Moreover, some applications on droplet manipulation employed in various filed, including microreactors, microfluidics, etc., are also presented. Finally, a summary of this work and possible future research directions for the transport of droplets on smart LIS are outlined to promote the development of this field.
受猪笼草启发的注入润滑剂表面(LIS)正在成为一种具有自愈合、自清洁、压力稳定性和超滑特性的新型驱避表面。最近,用于构建智能LIS的刺激响应材料拓宽了LIS在液滴操控方面的应用,在微流体领域显示出巨大潜力。本综述主要关注通过各种外部刺激(包括热、光、电、磁和机械力)诱导的不同机制在LIS上进行液滴操控的最新进展。首先,阐述了由液滴、润滑剂和基底的性质决定的LIS上的液滴状态。讨论了通过改变不同机制(如改变滑度、静电力和润湿性)实现的液滴状态来进行液滴操控。此外,还介绍了在各种领域(包括微反应器、微流体等)中用于液滴操控的一些应用。最后,概述了这项工作的总结以及智能LIS上液滴传输未来可能的研究方向,以促进该领域的发展。