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纳米天然抗菌剂@聚合物微凝胶-TiO2 杂化薄膜的创新制备,可吸收紫外线并具有抗菌性,适用于触摸屏面板。

The innovative fabrication of nano-natural antimicrobial agent@polymeric microgels-TiO hybrid films capable of absorbing UV and antibacterial on touch screen panel.

机构信息

College of Chemistry & Pharmacy, Northwest A&F University, Yangling, Shaanxi 712100, PR China.

College of Chemistry & Pharmacy, Northwest A&F University, Yangling, Shaanxi 712100, PR China.

出版信息

Colloids Surf B Biointerfaces. 2021 Jan;197:111410. doi: 10.1016/j.colsurfb.2020.111410. Epub 2020 Oct 17.

Abstract

It is significant to develop a protective film (coating) for touch screen panels with combined absorbing UV and antibacterial performances. This work developed a smart strategy to fabricate multifunctional protective films for touch screen panels. Polymeric microgels of polyquaternium-10 (PQ) and sodium alginate (SA) were firstly fabricated based on electrostatic interactions. The PQ-SA microgels solution was then cast on a glass substrate to produce PQ-SA films. Further, peroxo titanic acid as cross-linking agent was employed to cross link PQ-SA films via forming coordination bonds between polymers and Ti of peroxo titanic acid, whereafter TiO nanoparticles were generated in situ in PQ-SA films by hydrolyzing the peroxo titanic acid to endow PQ-SA films with excellent absorbing UV ability. Moreover, water-soluble quercetin and resveratrol nanoparticles are fabricated by incorporating solvent exchange method and borate esterification reaction and were loaded into the PQ-TiO-SA films to give the films good antibacterial performance. The as-prepared multifunctional films not only exhibited excellent absorbing UV, filtering visible light and antibacterial properties, but also possessed good water resistance, abrasion resistance, self-healing performances and high adhesion to a glass substrate. We believe that present multifunctional film as a protective film for touch screen panels can provide protection for users.

摘要

开发具有吸收紫外线和抗菌性能的触摸屏保护薄膜(涂层)具有重要意义。本工作开发了一种用于触摸屏保护薄膜的多功能智能策略。首先基于静电相互作用制备聚季铵盐-10(PQ)和海藻酸钠(SA)的聚合物微凝胶。然后将 PQ-SA 微凝胶溶液浇铸在玻璃基板上以制备 PQ-SA 薄膜。进一步,用过氧钛酸作为交联剂通过聚合物与过氧钛酸的 Ti 之间形成配位键来交联 PQ-SA 薄膜,此后过氧钛酸水解原位生成 TiO 纳米颗粒,从而赋予 PQ-SA 薄膜优异的吸收紫外线能力。此外,通过溶剂交换法和硼酸酯化反应制备了具有良好水溶性的槲皮素和白藜芦醇纳米粒子,并将其负载到 PQ-TiO-SA 薄膜中,赋予薄膜良好的抗菌性能。所制备的多功能薄膜不仅表现出优异的吸收紫外线、过滤可见光和抗菌性能,而且具有良好的耐水性、耐磨性、自修复性能和对玻璃基板的高附着力。我们相信,这种具有多种功能的薄膜作为触摸屏的保护薄膜,可以为用户提供保护。

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