Scholay

学术搜索 · AI 审稿 · LaTeX 协作

A Fe3+-Doped TiO2 Superhydrophilic Coating with Transparent and Long-Lasting Antifogging Properties Constructed Based on Nanostructured Antireflective and Capillary Anchoring Effects

作者:Yuying Yin, Meiru Huang, Luqi Liu, Guiping Zhou, Luli Shen, Gang Wang, Zhixiang Zeng, Fuliang Ma · 发表于:ACS Applied Materials & Interfaces · 年份:2024 · DOI:10.1021/acsami.4c12831 · 被引用次数:9 · 研究领域:Surface Modification and Superhydrophobicity、High-Temperature Coating Behaviors、Diamond and Carbon-based Materials Research

Superhydrophilic surfaces have attracted great interest in antifogging applications. However, balancing long-lasting superhydrophilicity and high transparency on antifogging surfaces remains a serious problem to be solved. The objective of this work is to prepare superhydrophilic coatings with transparent and long-lasting antifogging properties. In the design, a three-step method was used to obtain the target coatings: (1) magnetron sputtering deposition of a TiN film to provide high intensity, (2) anodic oxidation of the TiN film to obtain TiO 2 nanoparticles intended for nanostructured antireflective and capillary structures, and (3) the sol–gel method for the preparation of Fe 3+ -doped TiO 2 coatings using spin-coating in order to achieve superhydrophilicity. The nanostructures, due to their subwavelength dimensions, not only provide high transparency but also recoverable superhydrophilicity owing to the presence of a capillary anchoring effect that prevents the coating from dissolving and peeling off after soaking. The doping of Fe 3+ broadened the photoresponse range and maintained the long-lasting superhydrophilicity. Tests showed that the 2 mol % Fe 3+ -doped TiO 2 coating with nanostructures exhibited the highest transparency, longest-lasting superhydrophilicity, and antifogging properties. Furthermore, the coating provided excellent self-cleaning properties, as well as mechanical and chemical stability.