Farshchian Bahador, Pierce Jacoby, Beheshti Mohammad S, Park Sunggook, Kim Namwon
Ingram School of Engineering, Texas State University, San Marcos, TX 78666, USA.
Department of Mechanical and Industrial Engineering, Center for Bio-Modular Multiscale Systems for Precision Medicine, Louisiana State University, Baton Rouge, LA 70803, USA.
Microelectron Eng. 2018 Aug 5;195:50-56. doi: 10.1016/j.mee.2018.03.019. Epub 2018 Mar 20.
Heterogeneous substrates with moderate and extreme wettability contrasts were fabricated by comprising of superhydrophobic/hydrophilic and superhydrophobic/extremely hydrophilic surfaces, respectively. The interactions of water droplets impinging on the surfaces with sharp wettability contrasts were investigated experimentally. The impinging droplets that slightly touch the hydrophilic or extremely hydrophilic areas on each substrate exhibit a directional rebounding towards the more wetting surfaces, i.e., hydrophilic or extremely hydrophilic surface. The trajectory and landing distance of the rebounded droplets were tailored by controlling the releasing height of the droplet, wetting contrast across the border, and portion of the droplet touching the more wetting surface of the substrates with wettability contrasts. The landing distance of the droplet increases with the increased releasing height and higher wettability contrast across the border. Increasing the portion of the impinging droplet touching the more wetting surface of the heterogeneous substrates leads to the shorter landing distance of rebounded droplets.
通过分别构建超疏水/亲水和超疏水/极亲水表面,制备了具有中等和极端润湿性对比度的异质基底。对水滴撞击具有明显润湿性对比度的表面时的相互作用进行了实验研究。在每个基底上轻微接触亲水或极亲水区域的撞击水滴会朝着更易湿润的表面,即亲水或极亲水表面,呈现出定向反弹。通过控制水滴的释放高度、边界处的润湿性对比度以及水滴接触具有润湿性对比度的基底更易湿润表面的部分,可调整反弹水滴的轨迹和着陆距离。水滴的着陆距离随着释放高度的增加和边界处更高的润湿性对比度而增加。增加撞击水滴接触异质基底更易湿润表面的部分会导致反弹水滴的着陆距离缩短。