Ci Dazheng, Wang Ning, Xu Yunqi, Wu Shanshan, Wang Jing, Li Haoran, Xuan Shouhu, Fang Qunling
School of Food and Biological Engineering, Hefei University of Technology Hefei 230009 PR China
CAS Key Laboratory of Mechanical Behavior and Design of Materials, Department of Modern Mechanics, University of Science and Technology of China Hefei 230027 PR China.
RSC Adv. 2024 Feb 2;14(7):4518-4532. doi: 10.1039/d3ra07607e. eCollection 2024 Jan 31.
Wastewater discharged from industrial, agricultural and livestock production contains a large number of harmful bacteria and organic pollutants, which usually cause serious harm to human health. Therefore, it is urgent to find a "one-stone-two-birds" strategy with good antimicrobial and pollutant degradation activity for treating waste water. In this paper, SiO@AuAg/Polydopamine (SiO@AuAg/PDA) core/shell nanospheres, which possessed synergistic "Ag-release-photothermal" antibacterial and catalytic behaviors, have been successfully prepared a simple redox polymerization method. The SiO@AuAg/PDA nanospheres showed good catalytic activity in reducing 4-nitrophenol to 4-aminophenol (0.576 min mg). Since the AuAg nanoclusters contain both gold and silver elements, they provided a high photothermal conversion efficiency (48.1%). Under NIR irradiation (808 nm, 2.5 W), the catalytic kinetics were improved by 2.2 times. Besides the intrinsic Ag-release, the photothermal behavior originating from the AuAg bimetallic nanoclusters and the PDA component of SiO@AuAg/PDA also critically improved the antibacterial performance. Both and could be basically killed by SiO@AuAg/PDA nanospheres at a concentration of 90 μg mL under NIR irradiation. This "Ag-release-photothermal" coupled sterilization offers a straightforward and effective approach to antimicrobial therapy, and further exhibits high potential in nanomedicine for combating bacterial contamination in environmental treatment and biological fields.
工业、农业和畜牧生产排放的废水中含有大量有害细菌和有机污染物,这些通常会对人类健康造成严重危害。因此,迫切需要找到一种具有良好抗菌和污染物降解活性的“一石二鸟”策略来处理废水。本文通过一种简单的氧化还原聚合法成功制备了具有协同“银释放-光热”抗菌和催化行为的SiO@AuAg/聚多巴胺(SiO@AuAg/PDA)核壳纳米球。SiO@AuAg/PDA纳米球在将4-硝基苯酚还原为4-氨基苯酚(0.576 min mg)方面表现出良好的催化活性。由于AuAg纳米团簇同时包含金和银元素,它们提供了较高的光热转换效率(48.1%)。在近红外辐射(808 nm,2.5 W)下,催化动力学提高了2.2倍。除了固有的银释放外,源自AuAg双金属纳米团簇和SiO@AuAg/PDA的PDA成分的光热行为也显著提高了抗菌性能。在近红外辐射下,浓度为90 μg mL的SiO@AuAg/PDA纳米球基本可以杀死 和 。这种“银释放-光热”耦合杀菌为抗菌治疗提供了一种直接有效的方法,并且在纳米医学中进一步展现出在环境处理和生物领域对抗细菌污染的巨大潜力。