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首页> 外文期刊>Journal of Sol-Gel Science and Technology >Photocatalytic activity and antibacterial behavior of TiO2 coatings co-doped with copper and nitrogen via sol-gel method
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Photocatalytic activity and antibacterial behavior of TiO2 coatings co-doped with copper and nitrogen via sol-gel method

机译:通过溶胶 - 凝胶法共掺杂铜和氮的TiO2涂层的光催化活性和抗菌性能

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摘要

The sol-gel process is used to prepare photocatalytic coatings with antibacterial properties. Also, doping with metallic or non-metallic elements has an impact on the antibacterial and photocatalytic activity of these coatings. Although there are many studies in this field, the effect of co-doping with Cu and N and their concentrations on the antibacterial properties of TiO2 coatings against the E. coli and S. aureus bacteria has not been studied. In the present investigation, the sol-gel method was employed to deposit both undoped and Cu-N co-doped TiO2 photocatalytic coatings on glass surface, which are expected to degrade bacterial and chemical contaminants in water while exposed to visible sunlight wavelengths. Before the coating process, an appropriate heat treatment was applied on the samples and the quality of coatings, band gap energy, and also photocatalytic and antibacterial properties were evaluated. Results showed that, in the presence of dopants, the band gap become narrower and the absorption spectrum is transferred from the ultraviolet to the visible light range. Also, it was demonstrated that, under the visible light radiation, all of the co-doped samples show higher photocatalytic activity than the undoped ones. Meanwhile, the antibacterial characteristics of TiO2 coatings was enhanced by increasing the dopant concentration when exposing to sunlight.
机译:溶胶 - 凝胶工艺用于制备具有抗菌性质的光催化涂层。而且,用金属或非金属元素掺杂对这些涂层的抗菌和光催化活性产生影响。虽然该领域有很多研究,但尚未研究共掺杂与Cu和N的浓度及其对TiO2涂层的抗菌性质对大肠杆菌和金黄色菌群的影响。在本研究中,使用溶胶 - 凝胶方法在玻璃表面上沉积未掺杂的和Cu-n共掺杂的TiO 2光催化涂层,这预计将降低水中的细菌和化学污染物,同时暴露于可见的阳光波长。在涂布过程之前,对样品和涂层的质量,以及光催化和抗菌性质进行了适当的热处理。结果表明,在掺杂剂存在下,带隙变窄,吸收光谱从紫外线转移到可见光范围。此外,证明,在可见光辐射下,所有共掺杂样品显示出比未掺杂的相比的光催化活性更高。同时,通过增加掺杂剂在阳光下时,通过增加掺杂剂浓度来提高TiO2涂层的抗菌特性。

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