Advanced Science · 2020 · 92 citations · 43 references
Dynamic control of liquid wetting behavior on smart surfaces has attracted considerable concern owing to their important applications in directional motion, confined wetting and selective separation. Despite much progress in this regard, there still remains challenges in dynamic liquid droplet manipulation with fast response, no loss and anti-contamination. Herein, a strategy to achieve dynamic droplet manipulation and transportation on the electric field adaptive superhydrophobic elastomer surface is demonstrated. The superhydrophobic elastomer surface is fabricated by combining the micro/nanostructured clusters of hydrophobic TiO<sub>2</sub> nanoparticles with the elastomer film, on which the micro/nanostructure can be dynamically and reversibly tuned by electric field due to the electric field adaptive deformation of elastomer film. Accordingly, fast and reversible transition of wetting state between Cassie state and Wenzel state and tunable adhesion on the surface via electric field induced morphology transformation can be obtained. Moreover, the motion states of the surface droplets can be controlled dynamically and precisely, such as jumping and pinning, catching and releasing, and controllable liquid transfer without loss and contamination. Thus this work would open the avenue for dynamic liquid manipulation and transportation, and gear up the broad application prospects in liquid transfer, selective separation, anti-fog, anti-ice, microfluidics devices, etc.
43
Wettability of porous surfaces
A. B. D. Cassie, S. Baxter · Transactions of the Faraday Society · 1944 · 13.2K citations
David Quéré · Annual Review of Materials Research · 2008 · 2.5K citations
Directional water collection on wetted spider silk
Yongmei Zheng, Hao Bai, Zhongbing Huang et al. · Nature · 2010 · 2.1K citations
Water Treatment, Directional Water Collection, Desiccation +1
Candle Soot as a Template for a Transparent Robust Superamphiphobic Coating
Xu Deng, Lena Mammen, Hans‐Jürgen Butt et al. · Science · 2011 · 2K citations
A multi-structural and multi-functional integrated fog collection system in cactus
Jie Ju, Hao Bai, Yongmei Zheng et al. · Nature Communications · 2012 · 1.5K citations · Full text