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磁响应超疏水表面:用于液滴操控的水滴润湿性和附着性的原位可逆切换。

Magnetically Responsive Superhydrophobic Surface: In Situ Reversible Switching of Water Droplet Wettability and Adhesion for Droplet Manipulation.

机构信息

Defense Key Disciplines Lab of Novel Micro-Nano Devices and System Technology, Key Laboratory of Optoelectronic Technology and Systems, Ministry of Education , Chongqing University , Chongqing 400044 , China.

State Key Lab of Transducer Technology, Shanghai Institute of Microsystem and Information Technology , Chinese Academy of Sciences , Shanghai 200050 , China.

出版信息

ACS Appl Mater Interfaces. 2018 Jun 13;10(23):20150-20158. doi: 10.1021/acsami.8b04190. Epub 2018 Jun 4.

Abstract

A smart, magnetically responsive superhydrophobic surface was facilely prepared by combining spray coating and magnetic-field-directed self-assembly. The surface comprised a dense array of magnetorheological elastomer micropillars (MREMPs). Benefitting from the magnetic field-stiffening effect of the MREMPs, the surface exhibited reversible switching of the wettability and adhesion that was responsive to an on/off magnetic field. The wettability and adhesion properties of the surfaces with MREMPs were investigated under different magnetic fields. The results revealed that the adhesion force and sliding behaviors of these surfaces were strongly dependent on the intensity of the applied magnetic field and the mixing ratio of poly(dimethylsiloxane) (PDMS), iron particles, and solvent (in solution) used for preparation of the magnetically responsive superhydrophobic surfaces. The adhesion transition was attributed to the tunable mechanical properties of the MREMPs, which was easily controlled by an external magnetic field. It was also demonstrated that the magnetically responsive superhydrophobic surface can be used as a "mechanical hand" for no-loss liquid droplet transportation. This magnetically responsive superhydrophobic surface not only provides a novel interface for microfluidic control and droplet transportation, but also opens up new avenues for achieving smart liquid-repellent skin, programmable fluid collection and transport, and smart microfluidic devices.

摘要

一种智能的、对磁场响应的超疏水表面通过喷涂和磁场导向自组装相结合制备而成。该表面由密集排列的磁流变弹性体微柱(MREMPs)组成。得益于 MREMPs 的磁场增强效应,表面表现出对开/关磁场响应的润湿性和粘附性的可逆切换。研究了不同磁场下具有 MREMPs 的表面的润湿性和粘附性。结果表明,这些表面的粘附力和滑动行为强烈依赖于施加磁场的强度以及用于制备对磁场响应的超疏水表面的聚二甲基硅氧烷 (PDMS)、铁颗粒和溶剂(溶液中)的混合比。粘附转变归因于 MREMPs 的可调机械性能,这可以通过外部磁场轻松控制。还证明了这种对磁场响应的超疏水表面可用作无损失液滴输送的“机械手”。这种对磁场响应的超疏水表面不仅为微流控控制和液滴输送提供了新的界面,而且为实现智能拒液皮肤、可编程的流体收集和输送以及智能微流控器件开辟了新途径。

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