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微纳分级结构 ZnO 网膜的光控水渗透。

Photocontrollable water permeation on the micro/nanoscale hierarchical structured ZnO mesh films.

机构信息

School of Chemistry and Environment, Beihang University, Beijing 100191, PR China.

出版信息

Langmuir. 2011 Apr 5;27(7):4265-70. doi: 10.1021/la105112g. Epub 2011 Mar 8.

Abstract

Most research of responsive surfaces mainly focus on the wettability transition on different solid substrate surfaces, but the dynamic properties of the micro/nanostructure-enhanced responsive wettability on microscale pore arrays are lacking and still remain a challenge. Here we report the photocontrollable water permeation on micro/nanoscale hierarchical structured ZnO-coated stainless steel mesh films. Especially, for aligned ZnO nanorod array-coated stainless steel mesh film, the film shows good water permeability under irradiation, while it is impermeable to water after dark storage. A detailed investigation indicates that the special nanostructure and the appropriate size of the microscale mesh pores play a crucial role in the excellent controllability over water permeation. The excellent controllability of water permeation on this film is promising in various important applications such as filtration, microreactor, and micro/nano fluidic devices. This work may provide interesting insight into the design of novel functional devices that are relevant to surface wettability.

摘要

大多数响应表面的研究主要集中在不同固体基底表面上的润湿性转变,但微/纳米结构增强响应润湿性在微尺度孔隙阵列上的动态特性缺乏研究,仍然是一个挑战。在这里,我们报道了在微/纳米分级结构 ZnO 涂覆的不锈钢网膜上的光控水分渗透。特别是,对于取向的 ZnO 纳米棒阵列涂覆的不锈钢网膜,在照射下,膜显示出良好的水分透过性,而在黑暗储存后,膜对水是不可渗透的。详细的研究表明,特殊的纳米结构和微尺度网孔的适当尺寸在对水分渗透的优异可控性中起着关键作用。这种膜在过滤、微反应器和微/纳米流控装置等各种重要应用中具有优异的水分渗透性可控性。这项工作可能为设计与表面润湿性相关的新型功能器件提供有趣的见解。

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