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用于制备具有响应润湿性的超疏水表面的仿生金属-金属间化合物层状复合材料

Bioinspired Metal-Intermetallic Laminated Composites for the Fabrication of Superhydrophobic Surfaces with Responsive Wettability.

作者信息

Cao Jian, Gao Dejun, Li Chun, Si Xiaoqing, Jia Jianshu, Qi Junlei

机构信息

State Key Laboratory of Advanced Welding and Joining, Harbin Institute of Technology, Harbin 150001, China.

出版信息

ACS Appl Mater Interfaces. 2021 Feb 3;13(4):5834-5843. doi: 10.1021/acsami.0c20639. Epub 2021 Jan 19.

Abstract

Hundreds of copper and titanium foils were applied to prepare biomimetic metal-intermetallic laminated composites by diffusion bonding. The cross sections of the obtained diffusion bonded bulks were etched selectively with FeCl solution to get regular microarray structures. This kind of microstructure was controlled accurately and promptly by simple parameter adjustment. The etched surfaces were modified with 1-dodecanethiol, and the water contact angles (WCAs) were measured. The relationship between the microstructure and wettability of the achieved material was discussed, and the reason for the anisotropic wettability was also analyzed. Then etched surfaces were anodized in different electrolyte solutions to obtain different nanostructures. The morphology and chemical compositions of the surfaces were analyzed. The surfaces with CuO nanostructures by modification show superhydrophobicity with self-cleaning, on which the WCA and water sliding angle are 160.9° and 0.8°, respectively. The surfaces with TiO nanostructures without modification show ultraviolet light-responsive wettability. After modification with 11-mercaptoundecanoic acid and 1-decanethiol, the surfaces also exhibit pH-responsive wettability. The superhydrophobic surfaces with responsive wettability have potential applications in biotechnology and microfluidics.

摘要

通过扩散连接,应用数百片铜箔和钛箔制备仿生金属-金属间化合物层状复合材料。用FeCl溶液对所得扩散连接块体的横截面进行选择性蚀刻,以获得规则的微阵列结构。通过简单的参数调整,可以精确、迅速地控制这种微观结构。用1-十二烷硫醇对蚀刻表面进行改性,并测量水接触角(WCA)。讨论了所得材料的微观结构与润湿性之间的关系,并分析了润湿性各向异性的原因。然后在不同的电解液中对蚀刻表面进行阳极氧化,以获得不同的纳米结构。分析了表面的形貌和化学成分。通过改性具有CuO纳米结构的表面表现出具有自清洁功能的超疏水性,其上的水接触角和水滑动角分别为160.9°和0.8°。未经改性具有TiO纳米结构的表面表现出紫外光响应润湿性。用11-巯基十一烷酸和1-癸硫醇改性后,表面也表现出pH响应润湿性。具有响应润湿性的超疏水表面在生物技术和微流体领域具有潜在应用。

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