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首页> 外文期刊>Applied Microbiology and Biotechnology >Photocatalytic antimicrobial activity of thin surface films of TiO2, CuO and TiO2/CuO dual layers on Escherichia coli and bacteriophage T4
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Photocatalytic antimicrobial activity of thin surface films of TiO2, CuO and TiO2/CuO dual layers on Escherichia coli and bacteriophage T4

机译:TiO2 ,CuO和TiO2 / CuO双层薄膜对大肠杆菌和T4噬菌体的光催化抗菌活性

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TiO2-coated surfaces are increasingly studied for their ability to inactivate microorganisms. The activity of glass coated with thin films of TiO2, CuO and hybrid CuO/TiO2 prepared by atmospheric Chemical Vapour Deposition (Ap-CVD) and TiO2 prepared by a sol–gel process was investigated using the inactivation of bacteriophage T4 as a model for inactivation of viruses. The chemical oxidising activity was also determined by measuring stearic acid oxidation. The results showed that the rate of inactivation of bacteriophage T4 increased with increasing chemical oxidising activity with the maximum rate obtained on highly active sol–gel preparations. However, these were delicate and easily damaged unlike the Ap-CVD coatings. Inactivation rates were highest on CuO and CuO/TiO2 which had the lowest chemical oxidising activities. The inactivation of T4 was higher than that of Escherichia coli on low activity surfaces. The combination of photocatalysis and toxicity of copper acted synergistically to inactivate bacteriophage T4 and retained some self-cleaning activity. The presence of phosphate ions slowed inactivation but NaCl had no effect. The results show that TiO2/CuO coated surfaces are highly antiviral and may have applications in the food and healthcare industries.
机译:越来越多地研究了TiO2 涂层表面灭活微生物的能力。大气化学气相沉积(Ap-CVD)和溶胶-凝胶法制备的TiO2 ,CuO和CuO / TiO2杂化薄膜的涂层玻璃的活性为使用噬菌体T4的灭活作为病毒灭活的模型进行了研究。化学氧化活性也通过测量硬脂酸氧化来确定。结果表明,随着化学氧化活性的提高,噬菌体T4的失活速率也随之增加,而高活性溶胶-凝胶制剂的失活速率最高。但是,它们与Ap-CVD涂层不同,非常脆弱并且容易损坏。 CuO和CuO / TiO2 的失活率最高,化学氧化活性最低。在低活性表面上,T4的失活高于大肠杆菌。光催化和铜的毒性相结合协同作用,使T4噬菌体失活,并保留了一些自清洁活性。磷酸根离子的存在减缓了失活,但NaCl没有作用。结果表明,TiO2 / CuO包覆的表面具有很高的抗病毒性,可能在食品和医疗保健行业中得到应用。

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