Vu Tien Viet, Nguyen Thien Vuong, Tabish Mohammad, Ibrahim Sehrish, Hoang Thi Huong Thuy, Gupta Ram K, Dang Thi My Linh, Nguyen Tuan Anh, Yasin Ghulam
Faculty of Chemical Technology, Hanoi University of Industry, Bac Tu Liem, Hanoi 143510, Vietnam.
Institute for Tropical Technology, Vietnam Academy of Science and Technology, Hanoi 122300, Vietnam.
Polymers (Basel). 2021 Feb 26;13(5):717. doi: 10.3390/polym13050717.
This work aims to explore how ZnO nanoparticles enhance the mechanical, photoaging, and self‑cleaning properties of water‑borne acrylic coating. Micro/nano‑ZnO particles (at 2 wt.% of total solid resin) were dispersed into the acrylic polymer matrices using ultrasonication to understand the effect of the size of the coating properties. The effect of ZnO particles on the properties of composite coatings (25 µm of thick) have been evaluated through various tests, such as abrasion measurement, ultraviolet/condensation (UV/CON) weathering aging, and methylene blue self‑cleaning. Experimental data indicated that the incorporation of ZnO particles enhanced both abrasion resistance and methylene blue removal efficiency of the water‑borne acrylic coatings, with nano‑ZnO particles being the best. However, the weathering degradation of nanocomposite coatings was more severe as compared to the coating with micro‑ZnO (at the same ZnO content).
本工作旨在探究氧化锌纳米颗粒如何增强水性丙烯酸涂层的机械性能、抗光老化性能和自清洁性能。使用超声处理将微/纳米氧化锌颗粒(占总固体树脂的2 wt.%)分散到丙烯酸聚合物基体中,以了解颗粒尺寸对涂层性能的影响。通过各种测试,如磨损测量、紫外/冷凝(UV/CON)耐候老化和亚甲基蓝自清洁测试,评估了氧化锌颗粒对复合涂层(厚度为25 µm)性能的影响。实验数据表明,加入氧化锌颗粒提高了水性丙烯酸涂层的耐磨性和亚甲基蓝去除效率,其中纳米氧化锌颗粒效果最佳。然而,与含有微米级氧化锌(相同氧化锌含量)的涂层相比,纳米复合涂层的耐候性降解更为严重。