Yu Jiangping, Lao Junchao, Chu Dandan, Wang Donghong, Tang Ding, Li Dayong, Zhu Guoliang, Dong Anping, Shu Da, Peng Yinghong, Luo Jiayan, Sun Baode
Shanghai Key Laboratory of Advanced High Temperature Materials and Precision Forming, State Key Laboratory of Metal Matrix Composites, School of Materials Science and Engineering, Shanghai Jiao Tong University, Shanghai 200240, China.
State Key Laboratory of Mechanical System and Vibration, School of Mechanical Engineering, Shanghai Jiao Tong University, Shanghai 200240, China.
ACS Appl Mater Interfaces. 2020 Apr 22;12(16):19194-19200. doi: 10.1021/acsami.0c01632. Epub 2020 Apr 8.
The manipulation of liquid droplets on a specific surface with reversible wettability is of great importance for various applications from science to industry. Herein, the concept of a smart, flexible photodriven droplet motion (PDM) device with programmable wettability is designed using the 2D material of MXene film. Because of the MXene photothermal property, the Vaseline layer in the device is in transition between solid and liquid states under the heat transformation due to light illumination, thus attractively producing a reversible wettability for liquid motion with respect to sliding and pinning. Multifarious pathways for liquid motion could be designed through the flexibility of light illumination, which is a revolutionary enhancement in diverse liquid motion to form the desired pathways. In addition, we demonstrated liquid motion under illumination of the back face, which has a profound influence on applications, such as microfluidic systems, microengines, and liquid manipulation.
在具有可逆润湿性的特定表面上操纵液滴,对于从科学到工业的各种应用都非常重要。在此,利用二维材料MXene薄膜设计了一种具有可编程润湿性的智能、灵活的光驱动液滴运动(PDM)装置概念。由于MXene的光热特性,该装置中的凡士林层在光照引起的热转换下处于固态和液态之间的转变状态,从而吸引人地产生了相对于滑动和钉扎的液体运动的可逆润湿性。通过光照的灵活性可以设计出多种液体运动路径,这是对形成所需路径的各种液体运动的革命性增强。此外,我们展示了背面光照下的液体运动,这对微流体系统、微型发动机和液体操纵等应用具有深远影响。