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各向异性微结构弹性膜上的曲率可调液体传输

Curvature Adjustable Liquid Transport on Anisotropic Microstructured Elastic Film.

作者信息

Li Yan, Zhang Qiuya, Wei Xinyu, Li Ke, Tian Dongliang, Jiang Lei

机构信息

Key Laboratory of Bio-Inspired Smart Interfacial Science and Technology of Ministry of Education, School of Chemistry, Beihang University, Beijing 100191, P. R. China.

Beijing Advanced Innovation Center for Biomedical Engineering, Beihang University, Beijing 100191, P. R. China.

出版信息

ACS Nano. 2023 Mar 28;17(6):6036-6044. doi: 10.1021/acsnano.3c00555. Epub 2023 Mar 15.

Abstract

Directional liquid transport is expected via adjusting chemical components, surface morphology, and external stimuli and is critical for practical applications. Although many studies have been conducted, there are still challenges to achieving real-time transformation of liquid transport direction on the material surface. Herein, we demonstrate a strategy to achieve curvature responsive anisotropic wetting on the elastic film with V-shaped prism microarray (VPM) microstructure, which can be used to control the direction of liquid transport. The results reveal that the curvature change of an elastic film can adjust the arrangement of V-shaped prisms on the elastic film. Correspondingly, the liquid wetting trend will change and even the moving direction reverses with varying arrangements of the V-shaped prisms on the elastic film. Meanwhile, surface hydrophobicity of the VPM elastic film also affects the liquid wetting trend and even shows the opposite transport direction of the liquid, which is up to the water wetting state on the VPM elastic film. Based on these results, the VPM elastic film can serve as a valve to control the liquid transport direction and is promising in the application of liquid directional harvest, chemical reaction, microfluidic, .

摘要

通过调整化学成分、表面形态和外部刺激有望实现定向液体传输,这对于实际应用至关重要。尽管已经进行了许多研究,但在材料表面实现液体传输方向的实时转变仍存在挑战。在此,我们展示了一种策略,可在具有V形棱镜微阵列(VPM)微观结构的弹性膜上实现曲率响应各向异性润湿,该结构可用于控制液体传输方向。结果表明,弹性膜的曲率变化可调节弹性膜上V形棱镜的排列。相应地,随着弹性膜上V形棱镜排列的变化,液体润湿趋势会改变,甚至移动方向会反转。同时,VPM弹性膜的表面疏水性也会影响液体润湿趋势,甚至显示出液体的相反传输方向,这取决于VPM弹性膜上的水润湿状态。基于这些结果,VPM弹性膜可作为控制液体传输方向的阀门,在液体定向收集、化学反应、微流体等应用中具有广阔前景。

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