Preparation of Ag-Decorated TiO2 Composite Materials and Study on Photocatalytic Performance

光催化 光热治疗 材料科学 抗菌剂 复合数 降级(电信) 吸收(声学) 比表面积 纳米复合材料 光热效应 介孔材料 复合材料 化学工程 可见光谱 纳米技术 吸水率 大肠杆菌 反应速率常数 核化学 纳米颗粒 响应面法 最小抑制浓度 表征(材料科学)
作者
Hongfei Dou,Jie Wang,Yan Zhao,Junjie Liu,Yannan Li
出处
期刊:Nanomaterials [Multidisciplinary Digital Publishing Institute]
卷期号:15 (18): 1383-1383
标识
DOI:10.3390/nano15181383
摘要

Aiming at the insufficient broad-spectrum absorption and high carrier complexation rate in the photocatalytic antimicrobial application of TiO2, Ag/TiO2 composite materials were prepared by co-precipitation method in this study. The material characterization showed that Ag was uniformly dispersed on the TiO2 surface in the form of nanoparticles, and the specific surface area of Ag/TiO2 composite materials was enhanced by 59.6% compared with that of pure TiO2, and the mesoporous structure was significantly optimized. Visible photocatalytic tests showed that the degradation rate of Ag/TiO2 composite materials for Rh B and M O was more than two times higher than that of pure TiO2. Under dark conditions, the material showed a minimum inhibitory concentration (MIC) of 62.5 μg/mL against Escherichia coli and Staphylococcus aureus, with an antimicrobial rate of 99.8% for 8 h, confirming its non-light-dependent antimicrobial activity. Mechanistic studies revealed that photogenerated electrons were efficiently captured by Ag nanoparticles, which inhibited e-h+ complexation; meanwhile, the photothermal effect (ΔT > 15 °C) promoted the sustained release of Ag+, which realized the triple synergistic antimicrobial activity by disrupting the bacterial membrane and interfering with metabolism. This study provides a new strategy for the development of efficient solar-powered water treatment materials.
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