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Antibacterial performance of photocatalyst thin film fabricated by defection effect in visible light

机译:可见光下缺陷效应制备的光催化剂薄膜的抗菌性能

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We have developed a new photocatalyst thin film that has strong antibacterial action in visible light.In this study the radiofrequency (RF) sputter technique was used to deposit a defective titanium dioxide (TiO_x,x < 2) photocatalyst thin film (120 nm thickness) on glass and steel substrates.In the ultraviolet (UV)-visible spectrum analysis,the defective TiOx thin film was found to generate the red shift effect.To determine whether the defective TiO_x thin film has antibacterial ability under visible light,we designed a series of experiments according to the Japanese Industrial Standards (JIS) Committee standard for testing antibacterial performance and for exploring the impact of surface roughness of substrate.Our results show that the antibacterial performance rate against Escherichia coli could reach 99.99% in visible light.We also proved that the coating technology can be applied effectively to surfaces with different degrees of roughness.It is suitable for protecting both human health and the natural environment.
机译:我们开发了一种在可见光中具有强抗菌作用的新型光催化剂薄膜。在这项研究中,射频(RF)溅射技术被用于沉积有缺陷的二氧化钛(TiO_x,x <2)的光催化剂薄膜(厚度为120 nm)。在紫外和可见光谱分析中,发现缺陷的TiOx薄膜会产生红移效应。为了确定缺陷的TiO_x薄膜在可见光下是否具有抗菌能力,我们设计了一系列根据日本工业标准(JIS)委员会标准进行的用于测试抗菌性能​​和探索基材表面粗糙度影响的实验的结果表明,在可见光下对大肠杆菌的抗菌性能可以达到99.99%。涂层技术可以有效地应用于粗糙度不同的表面,适用于保护人健康和自然环境。

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