超亲水性
材料科学
涂层
磨损(机械)
光学涂层
复合材料
基质(水族馆)
聚合物
隐形眼镜
接触角
纳米技术
光学
海洋学
物理
地质学
作者
Ye Sun,Rajdeep Singh Rawat,Zhong Chen
标识
DOI:10.1002/admi.202101864
摘要
Abstract Polymeric lenses have been increasingly used to replace glass lenses due to advantages of light weight, high refractive index, and ease of making into complicated shapes. However, a severe constraint to their wider application lies with their intrinsic weakness in hardness that can lead to mechanical damages by abrasion. During service, fogging remains another unsolved challenge to optical lenses, which may significantly reduce the users’ visibility or even cause accident. Therefore, it is imperative to develop mechanically reliable and transparent antifogging coating on polymeric lenses. In this work, a two‐step protocol is developed comprising a room‐temperature oxygen plasma treatment of polymer substrate followed by antifogging silica thin film deposition using pulsed laser deposition (PLD). The oxygen plasma treatment modifies the surface chemistry to allow a strong adhesion between the polymer substrate and the silica coating. Due to the porous nature of the PLD deposited nanosilica film, the coating also displays an antireflection effect. This mechanically reliable and highly transparent superhydrophilic silica coating opens great opportunity for the eyewear and high precision optics industries.
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