Yong Jiale, Zhuang Jian, Bai Xue, Huo Jinglan, Yang Qing, Hou Xun, Chen Feng
State Key Laboratory for Manufacturing System Engineering and Shaanxi Key Laboratory of Photonics Technology for Information, School of Electronic Science and Engineering, Xi'an Jiaotong University, Xi'an, 710049, PR China.
School of Mechanical Engineering, Xi'an Jiaotong University, Xi'an, 710049, PR China.
Nanoscale. 2021 Jun 17;13(23):10414-10424. doi: 10.1039/d1nr01225h.
To solve the problems caused by tiny bubbles in liquids and the difficulties involved in collecting useful gas underwater, this paper proposes a method to separate bubbles from water by integrating underwater superaerophobic and superaerophilic porous membranes, including bubble removal and collection methods. Inspired by fish scales and lotus leaves, underwater superaerophobic microstructures and underwater superaerophilic microstructures are prepared on a stainless steel (SS) mesh by femtosecond laser processing, respectively. The as-prepared underwater superaerophobic mesh has an anti-bubble ability, while the underwater superaerophilic mesh has a bubble-absorption ability in water. Based on the different dynamic behavior of bubbles on these two kinds of superwetting meshes, efficient water/bubble separation is achieved by using laser-induced superwetting meshes. Tiny bubbles can be completely removed from the water flow in a pipe or easily collected. Such water/gas separation methods based on underwater superaerophobic and superaerophilic porous membranes provide an effective way to prevent the damage caused by bubbles and to collect the available gas in liquids, which has great potential applications in energy utilization, environmental protection, medical and health care, microfluidic chips, chemical manufacturing, agricultural breeding, and so on.
为解决液体中微小气泡带来的问题以及水下收集有用气体的困难,本文提出一种通过集成水下超疏气和超亲气多孔膜从水中分离气泡的方法,包括气泡去除和收集方法。受鱼鳞和荷叶的启发,分别通过飞秒激光加工在不锈钢(SS)网上制备水下超疏气微结构和水下超亲气微结构。所制备的水下超疏气网具有抗气泡能力,而水下超亲气网在水中具有气泡吸收能力。基于气泡在这两种超润湿性网材上的不同动态行为,利用激光诱导超润湿性网材实现了高效的水/气泡分离。微小气泡可从管道中的水流中完全去除或轻松收集。这种基于水下超疏气和超亲气多孔膜的水/气分离方法为防止气泡造成的损害以及收集液体中的可用气体提供了一种有效途径,在能源利用、环境保护、医疗卫生、微流控芯片、化学制造、农业育种等方面具有巨大的潜在应用价值。