JC STEM Lab of Sustainable Fibers and Textiles, School of Fashion and Textiles, The Hong Kong Polytechnic University, Hung Hom, Kowloon, Hong Kong.
Deakin University, Institute for Frontier Materials, Geelong, VIC 3216, Australia.
ACS Appl Mater Interfaces. 2023 Jul 19;15(28):34031-34043. doi: 10.1021/acsami.3c04598. Epub 2023 Jul 3.
Cotton fabrics with superhydrophobic, antibacterial, UV protection, and photothermal properties were developed using Ag/PDMS coatings, and the role of coating formulations on the obtained functionalities was studied. Specific attention was paid to understanding the relationships between the fabrics' superhydrophobicity and antibacterial activity against () bacteria. UV protection performance of Ag/PDMS coatings was thoroughly evaluated based on the variation of UV transmission rate through coated fabrics and photoinduced chemiluminescence spectra. Moreover, the effect of silver nanoparticles (Ag NPs) and PDMS on developing a photothermal effect on fabrics was discussed. It was found that the content of Ag NPs and PDMS played critical roles in determining the water contact angle (WCA) on modified fabrics. The largest WCA was 171.31°, which was durable even after numerous accelerated wash cycles and abrasions. Antibacterial activity of fabrics showed the positive effect of pure PDMS in bacterial growth inhibition. Moreover, it was found that the antibacterial performance was greatly affected by the content of Ag NPs loaded on fabrics rather than their superhydrophobic status. Moreover, increasing the content of Ag NPs boosted the UV protection level of fabrics, improved fabrics photostability, and reduced the UV transmission rate through fabrics. Testing the photothermal effect confirmed that the content of Ag NPs and PDMS both played prominent roles, where Ag acted as a photothermal agent and PDMS determined the NIR reflection rate from the coated surface. The modified fabrics were characterized using TGA, SEM, FTIR, and XRD techniques, and it was confirmed that using a higher amount of PDMS increased the amount of Ag NPs deposition on fabrics.
采用 Ag/PDMS 涂层制备了具有超疏水、抗菌、抗紫外线和光热性能的棉织物,并研究了涂层配方对所获得功能的作用。特别关注了理解织物超疏水性和对 () 细菌的抗菌活性之间的关系。通过涂层织物的透过率和光致化学发光光谱,对 Ag/PDMS 涂层的抗紫外线性能进行了彻底评估。此外,还讨论了银纳米粒子(Ag NPs)和 PDMS 对织物光热效应的影响。结果发现,Ag NPs 和 PDMS 的含量在决定改性织物的水接触角(WCA)方面起着关键作用。最大 WCA 为 171.31°,即使经过多次加速洗涤和磨损,也具有耐用性。织物的抗菌活性显示出纯 PDMS 在抑制细菌生长方面的积极作用。此外,发现抗菌性能受织物上负载的 Ag NPs 含量的影响很大,而与其超疏水性状态无关。此外,增加 Ag NPs 的含量提高了织物的抗紫外线水平,提高了织物的光稳定性,并降低了织物的紫外线透过率。光热效应测试证实,Ag NPs 和 PDMS 的含量都发挥了重要作用,Ag 作为光热剂,PDMS 决定了涂层表面的近红外反射率。通过 TGA、SEM、FTIR 和 XRD 技术对改性织物进行了表征,结果证实使用更高量的 PDMS 增加了 Ag NPs 在织物上的沉积量。