Cui Jixing, Shao Yuanyuan, Zhang Haiping, Zhang Hui, Zhu Jesse
Collaborative Innovation Center of Chemical Science and Engineering (Tianjin), School of Chemical Engineering and Technology, Tianjin University, Tianjin 300072, China.
Department of Chemical and Biochemical Engineering, The University of Western Ontario, London, Ontario N6A 5B9, Canada.
Chem Eng J. 2021 Sep 15;420:127633. doi: 10.1016/j.cej.2020.127633. Epub 2020 Nov 6.
Applying silver into coatings has become a prevalent method in fabricating antimicrobial surfaces. However, the concerns about durability always exist and limit its applications. Here, a highly inhibitory, active, durable, and easy-to-use silver ions-nanosilver antimicrobial additive for powder coatings was fabricated in this study. Silver nanoparticles were chemically bonded to the Ag, Cu, and Zn-ternary ion-exchanged zeolite by -lipoic acid, which was then encapsulated by hydrophilic polymers. The fabricated silver ions and silver nanoparticles (Ag-AgNPs) complementary structure provides a synergistic effect. Ag is the main antimicrobial agent, while AgNPs act as a supplementary reservoir of Ag. As well, the formed thin layer of silver nanoparticles and hydrophilic film prolongs the release of active Ag from zeolite, and Ag facilitates the activation of AgNPs. The results show that this additive indicates excellent antimicrobial activity to , , , and , and that the coatings with the additive exhibit over 99.99% reduction rate for the tested bacteria and fungi. The coating film is able to maintain over 99% antimicrobial reduction even after 1200 repeated solution wipings, or over 30 wash cycles of artificial sweat solution, indicating high durability. Furthermore, the yellowness of the coating is not evident (Δb < 2) despite the high loading of silver, and the silver nanoparticles have little impact on gloss, haze, and distinctness of the coating film image.
在涂层中添加银已成为制备抗菌表面的一种常用方法。然而,对其耐久性的担忧一直存在,并限制了其应用。在本研究中,制备了一种用于粉末涂料的具有高抑制性、活性、耐久性且易于使用的银离子-纳米银抗菌添加剂。银纳米颗粒通过硫辛酸化学键合到Ag、Cu和Zn三元离子交换沸石上,然后用亲水性聚合物进行封装。所制备的银离子和银纳米颗粒(Ag-AgNPs)互补结构产生协同效应。Ag是主要抗菌剂,而AgNPs作为Ag的补充储存库。此外,形成的银纳米颗粒薄层和亲水膜延长了活性Ag从沸石中的释放,并且Ag促进了AgNPs的活化。结果表明,该添加剂对大肠杆菌、金黄色葡萄球菌、白色念珠菌和黑曲霉具有优异的抗菌活性,含有该添加剂的涂层对测试细菌和真菌的减少率超过99.99%。即使经过1200次反复溶液擦拭,或超过30次人工汗液溶液洗涤循环后,涂膜仍能保持超过99%的抗菌率,表明其具有高耐久性。此外,尽管银含量高,但涂层的黄度不明显(Δb < 2),并且银纳米颗粒对涂膜的光泽度、雾度和图像清晰度影响很小。