Journal of Bionic Engineering ›› 2023, Vol. 20 ›› Issue (3): 910-922.doi: 10.1007/s42235-022-00318-6

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Preparation and Properties of Superhydrophobic ZnO Nanorod-based Nanocomposite on the Surface of Stainless Steel Mesh

Shunuo Bian1; Junhua Xu1; Lihua Yu1; Di Lu1   

  1. 1 School of Materials Science and Engineering, Jiangsu University of Science and Technology, Zhenjiang 212003, China
  • 出版日期:2023-05-10 发布日期:2023-05-10
  • 通讯作者: Junhua Xu E-mail:jhxu@just.edu.cn
  • 作者简介:Shunuo Bian1; Junhua Xu1; Lihua Yu1; Di Lu1

Preparation and Properties of Superhydrophobic ZnO Nanorod-based Nanocomposite on the Surface of Stainless Steel Mesh

Shunuo Bian1; Junhua Xu1; Lihua Yu1; Di Lu1   

  1. 1 School of Materials Science and Engineering, Jiangsu University of Science and Technology, Zhenjiang 212003, China
  • Online:2023-05-10 Published:2023-05-10
  • Contact: Junhua Xu E-mail:jhxu@just.edu.cn
  • About author:Shunuo Bian1; Junhua Xu1; Lihua Yu1; Di Lu1

摘要: Bionic superhydrophobic coating has extremely broad application prospects and practical value. It is based on two important conditions, one is the construction of micro–nano structure, the other is the material with low surface energy. How to stabilize the micro–nano structure has become the focus of researches. In this work, a layer of Zn film is deposited on the stainless steel mesh with sturdy micron structure by RF magnetron sputtering. The solid micron structure of the stainless steel mesh itself, combined with the method of thermal oxidation, the surface of the stainless steel mesh is thus formed into a nanorod like ZnO nano structure, and then modified with perfluorodecyltriethoxysilane (PFDS) for low surface energy. The maximum contact angle of the superhydrophobic sample is 154.8°, and the minimum sliding angle is 2°, and it also has excellent corrosion resistance, thermal stability, self-cleaning, anti-aging and anti-icing properties, which provides a design idea for the preparation of superhydrophobic coatings.

关键词: Superhydrophobic , · Corrosion resistance , · Self-cleaning , · Magnetron sputtering

Abstract: Bionic superhydrophobic coating has extremely broad application prospects and practical value. It is based on two important conditions, one is the construction of micro–nano structure, the other is the material with low surface energy. How to stabilize the micro–nano structure has become the focus of researches. In this work, a layer of Zn film is deposited on the stainless steel mesh with sturdy micron structure by RF magnetron sputtering. The solid micron structure of the stainless steel mesh itself, combined with the method of thermal oxidation, the surface of the stainless steel mesh is thus formed into a nanorod like ZnO nano structure, and then modified with perfluorodecyltriethoxysilane (PFDS) for low surface energy. The maximum contact angle of the superhydrophobic sample is 154.8°, and the minimum sliding angle is 2°, and it also has excellent corrosion resistance, thermal stability, self-cleaning, anti-aging and anti-icing properties, which provides a design idea for the preparation of superhydrophobic coatings.

Key words: Superhydrophobic , · Corrosion resistance , · Self-cleaning , · Magnetron sputtering