Wu Zhipeng, Yin Kai, Wu Junrui, Zhu Zhuo, Duan Ji-An, He Jun
Hunan Key Laboratory of Super Microstructure and Ultrafast Process, School of Physics and Electronics, Central South University, Changsha 410083, China.
The State Key Laboratory of High Performance and Complex Manufacturing, College of Mechanical and Electrical Engineering, Central South University, Changsha 410083, China.
Nanoscale. 2021 Feb 4;13(4):2209-2226. doi: 10.1039/d0nr06639g.
Janus wettability membranes have received much attention because of their asymmetric surface wettability. On the basis of this distinctiveness from traditional symmetrical membranes, relevant scholars have been inspired to pursue many innovations utilizing such membranes. Femtosecond laser microfabrication shows many advantages, such as precision, short time, and environmental friendliness, over traditional fabrication methods. Now this has been applied in structuring Janus membranes by researchers. This review covers recent advances in femtosecond laser-structured Janus membranes with asymmetric surface wettability. The background in femtosecond laser-structured Janus membranes is first discussed, focusing on the Janus wettability membrane and femtosecond laser microfabrication. Then the applications of Janus membranes are introduced, which are divided into unidirectional fluid transport, oil-water separation, fog harvesting, and seawater desalination. Finally, based on femtosecond laser-structured Janus membranes, some existing problems are pointed out and future perspectives proposed.
由于其不对称的表面润湿性,Janus润湿性膜受到了广泛关注。基于这种与传统对称膜的独特性,相关学者受到启发,利用这种膜进行了许多创新。与传统制造方法相比,飞秒激光微加工具有精度高、时间短、环境友好等诸多优点。目前,研究人员已将其应用于Janus膜的结构化。本文综述了飞秒激光结构化的具有不对称表面润湿性的Janus膜的最新进展。首先讨论了飞秒激光结构化Janus膜的背景,重点是Janus润湿性膜和飞秒激光微加工。然后介绍了Janus膜的应用,分为单向流体传输、油水分离、雾收集和海水淡化。最后,基于飞秒激光结构化Janus膜,指出了一些现存问题并提出了未来展望。