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一种具有磁热响应线的超疏水-超滑可切换表面,用于排斥复杂液滴。

A Superhydrophobicity-Slipperiness Switchable Surface with Magneto- and Thermo-responsive Wires for Repelling Complex Droplets.

作者信息

Wei Chuanqi, Gendelman Oleg, Jiang Youhua

机构信息

Department of Mechanical Engineering (Robotics), Guangdong Technion─Israel Institute of Technology, Shantou, Guangdong 515063, China.

Faculty of Mechanical Engineering, Technion─Israel Institute of Technology, Haifa 3200003, Israel.

出版信息

Langmuir. 2024 Feb 6;40(5):2764-2772. doi: 10.1021/acs.langmuir.3c03556. Epub 2024 Jan 22.

Abstract

The inefficacy of repelling water droplets laden with macromolecules (complex droplets or diluted polymer solution) is a long-standing shortcoming of superhydrophobic surfaces, which severely limits their reliability in practical applications. Here, we design a surface termed the superhydrophobicity-slipperiness switchable surface (3S surface), which demonstrates superhydrophobicity at room temperature and slipperiness when heated. The 3S surface is composed of magneto-responsive wires coated with superhydrophobic nanoparticles and impregnated with thermoresponsive paraffin, exhibiting lotus leaf-inspired passive water repellency and respiratory cilia-inspired active water repellency at room temperature. When heated, the impregnated paraffin melts and forms a lubricant layer atop the surface structures, exhibiting the pitcher-plant-inspired removal of complex droplets that remain pinned on conventional superhydrophobic surfaces. The counterintuitive integration of superhydrophobicity (a liquid-solid-gas composite system) and slipperiness (a liquid-lubricant-gas system) into a surface and the on-demand switch between them are not only important to the applicability of self-cleaning surfaces to real-world environments, where complex liquids are inevitable, but also provide insights into various interface-related applications.

摘要

排斥负载大分子的水滴(复合液滴或稀释的聚合物溶液)的无效性是超疏水表面长期存在的一个缺点,这严重限制了它们在实际应用中的可靠性。在此,我们设计了一种称为超疏水-滑爽性可切换表面(3S表面)的表面,它在室温下表现出超疏水性,加热时表现出滑爽性。3S表面由涂覆有超疏水纳米颗粒并浸渍有热响应性石蜡的磁响应线组成,在室温下表现出受荷叶启发的被动拒水和受呼吸纤毛启发的主动拒水。加热时,浸渍的石蜡熔化并在表面结构顶部形成润滑层,表现出受猪笼草启发的对残留在传统超疏水表面上的复合液滴的去除。将超疏水性(液-固-气复合系统)和滑爽性(液-润滑剂-气系统)反直觉地整合到一个表面中,并实现它们之间的按需切换,这不仅对于自清洁表面在复杂液体不可避免的现实环境中的适用性很重要,而且还为各种与界面相关的应用提供了见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a8e2/10851661/165f8d666e5f/la3c03556_0001.jpg

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