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Antimicrobial property and photocatalytic antibacterial mechanism of the TiO2-doped SiO2 hybrid materials under ultraviolet-light irradiation and visible-light irradiation

机译:紫外线辐照下TiO2掺杂SiO2杂交材料的抗菌性和光催化抗菌机理及可见光辐照

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In this study, an antibacterial hybrid material of TiO2-doped SiO2 (TiO2@SiO2) was prepared by hydrolysis, where the SiO2 carrier was synthesized by a sol-gel method. The as-prepared antibacterial materials were characterized by scanning electron microscopy, energy-dispersive X-ray spectrometry, X-ray diffraction, X-ray photoelectron spectroscopy, Fourier transform infrared spectroscopy, and Brunauer-Emmett-Teller measurements and particle size analysis. The antibacterial effect of the prepared hybrid materials on Escherichia con (E. coli) was investigated by the plate coating method. The presence of the Ti-O-Si bond between anatase-TiO2 and SiO2 was confirmed by the above characterization methods, which was beneficial to enhance the photocatalytic inactivation effect of E. coli under ultraviolet-light (UVA) irradiation and visible-light irradiation. With the increase in the TiO2 content from 1.5% to 4.4%, antibacterial activities were clearly enhanced under different types of light irradiation. For the optimum sample of 4.4%-TiO2@SiO2, antibacterial rates of 99.3% and 90.5% under UVA irradiation and visible-light irradiation were obtained, respectively. The antibacterial mechanism was demonstrated by fluorescence detection of the reactive oxygen species (ROS) and SEM images of the changes in the bacterial morphology. Results revealed that the hybrid materials can generate ROS under not only UVA irradiation but also visible-light irradiation. A majority of the ROS migrated into the bacterial cells and caused the oxidative damage of cells. This is a crucial study for the photocatalytic inactivation mechanism of the bacteria under both UVA and visible-light irradiation.
机译:在该研究中,通过水解制备TiO 2掺杂SiO2(TiO2 @ SiO 2)的抗菌杂化材料,其中通过溶胶 - 凝胶法合成SiO 2载体。通过扫描电子显微镜,能量 - 分散X射线光谱,X射线衍射,X射线光电子能量,傅里叶变换红外光谱,傅立叶变换红外光谱和Brunauer-Emmett-Teller测量和粒度分析,表征了AS制备的抗菌材料。通过板涂布法研究了制备的杂化材料对大肠杆菌(大肠杆菌)的抗菌作用。通过上述表征方法证实了阳离子酶-TiO2和SiO 2之间的Ti-O-Si键的存在,这有利于在紫外线(UVA)照射下提高大肠杆菌的光催化灭活效果和可见光照射。随着TiO 2含量的增加从1.5%到4.4%,在不同类型的光照射下明显增强了抗菌活性。对于4.4%-TiO2@siO2的最佳样品,分别获得UVA辐照和可见光照射下99.3%和90.5%的抗菌率。通过荧光检测对细菌形态的变化的反应性氧物质(ROS)和SEM图像的荧光检测证明了抗菌机理。结果表明,杂交材料不能在不仅在UVA辐射中产生ROS,而且可以在紫外线照射中产生ROS。大多数ROS迁移到细菌细胞并导致细胞的氧化损伤。这是对UVA和可见光照射下细菌的光催化灭活机制的重要研究。

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