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具有可靠防雾/抗冻性能的快速紫外光固化两性可湿涂料。

Fast UV-Curable Zwitter-Wettable Coatings with Reliable Antifogging/Frost-Resisting Performances.

作者信息

Zhong Hao, Liu Xiaoxiao, Yu Boxin, Zhou Shengzhu

机构信息

Agriculture College, Yanbian University, Yanbian 133002, China.

Institute of Animal Husbandry and Veterinary Medicine, Jilin Academy of Agricultural Sciences, Changchun 130119, China.

出版信息

Biomimetics (Basel). 2022 Oct 13;7(4):162. doi: 10.3390/biomimetics7040162.

Abstract

Antifogging surfaces with unique properties to migrate severe fog formation have gained extensive interest, which is of particular interest for transparent substrates to obtain high visibility and transparency. To date, a large number of strategies including superhydrophilic or superhydrophobic surfaces and titanium dioxide (TiO)-based composite coatings have been developed based on different mechanisms. Although these surfaces exhibit effective antifogging properties, the rigid nanostructures, cumbersome preparation, and the need for UV light excitation largely limit their widespread applications. Herein, we report a zwitter-wettable antifogging and frost-resisting coating through a fast UV-curable cross-linking of copolymer with benzophenone groups. A series of random copolymers consisting of hydrophilic hydroxyethyl methacrylate (HEA), hydrophobic methyl methacrylate (MMA), and benzophenone-based acrylate units are developed by thermally triggered free-radical polymerization. Upon UV light irradiation, a highly efficient antifogging/frost-resisting coating is covalently bonded on a polycarbonate plate surface, maintaining a light transmission higher than 85%, which was confirmed in both high and low temperature anti-fog tests. Moreover, the wetting behaviors reveal that the antifogging performance exhibited by the zwitter-wettable surface mainly relies on its surface water-adsorbing capability to imbibe condensed water vapor on the surface outmost layer. Notably, the antifogging/frost-resisting behaviors can be well regulated by adjusting the hydrophilic/hydrophobic units, due to the proper balance between the water-adsorption and coating stability. Owing to its simplicity, low-cost preparation and high efficiency, this UV-curable acrylate antifogging coating may find a wide range of applications in various display devices in analytical and detection instruments.

摘要

具有独特性能以抑制严重雾气形成的防雾表面已引起广泛关注,对于透明基材而言,获得高可见度和透明度尤其重要。迄今为止,基于不同机制已开发出大量策略,包括超亲水或超疏水表面以及二氧化钛(TiO)基复合涂层。尽管这些表面表现出有效的防雾性能,但刚性纳米结构、繁琐的制备过程以及对紫外光激发的需求在很大程度上限制了它们的广泛应用。在此,我们报道了一种通过含二苯甲酮基团的共聚物快速紫外光固化交联制备的两性可湿化防雾抗霜涂层。通过热引发自由基聚合制备了一系列由亲水甲基丙烯酸羟乙酯(HEA)、疏水甲基丙烯酸甲酯(MMA)和二苯甲酮基丙烯酸酯单元组成的无规共聚物。在紫外光照射下,一种高效的防雾/抗霜涂层共价键合在聚碳酸酯板表面,在高低温防雾测试中均证实其透光率保持高于85%。此外,润湿行为表明两性可湿化表面表现出的防雾性能主要依赖于其表面吸水能力,以吸收最外层表面的凝结水蒸气。值得注意的是,由于水吸附和涂层稳定性之间的适当平衡,通过调节亲水/疏水单元可以很好地调控防雾/抗霜行为。由于其制备简单、成本低且效率高,这种紫外光固化丙烯酸酯防雾涂层可能在分析和检测仪器中的各种显示设备中找到广泛应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ccab/9624335/776f4d5d9299/biomimetics-07-00162-g001.jpg

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