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CVD elaboration of nanostructured TiO2-Ag thin films with efficient antibacterial properties

机译:具有高效抗菌性能的纳米TiO2-Ag薄膜的CVD精细加工

摘要

Nanostructured TiO2-Ag composite coatings are deposited by direct liquid injection metal-organic (DLI-MO) CVD at 683K in a one-step process. Silver pivalate (AgPiv) and titanium tetra-iso-propoxide (TTIP) are used as Ag and Ti molecular precursors, respectively. Metallic silver nanoparticles are co-deposited with anatase TiO2 on stainless steel, glass, and silicon wafers. The silver particles are uniformly embedded in the oxide matrix through the entire film thickness. The influence of the growth conditions, including injection parameters, is investigated on the chemical, physical, and structural characteristics of the coatings as well as on their anti-bacterial activities. The bacterium Staphylococcus aureus is employed for anti-bacterial tests. The films are bactericidal, according to the JIS Z 2801 standard test performed in the dark, when they contain less than 1 at.-% of silver.udUnderUVirradiation they exhibit a photocatalytic activity which decays by increasing the silver content. As a result of this dual functionality, the TiO2-Ag nanocomposite coatings show promising potentialities as long-term anti-bacterial surfaces since selfcleaning can be achieved periodically under UV light in order to maintain an efficient anti-bacterial activity in the dark or in visible light.
机译:纳米结构的TiO2-Ag复合涂层是通过直接液体注入金属有机(DLI-MO)CVD在683K下一步一步沉积的。新戊酸银(AgPiv)和四异丙氧基钛(TTIP)分别用作Ag和Ti分子的前体。金属纳米银与锐钛矿型TiO2共沉积在不锈钢,玻璃和硅片上。银颗粒通过整个膜厚度均匀地嵌入氧化物基质中。研究了生长条件的影响,包括注射参数,对涂层的化学,物理和结构特征及其抗菌活性的影响。金黄色葡萄球菌被用于抗菌测试。当薄膜包含少于1 at .-%的银时,根据在黑暗中执行的JIS Z 2801标准测试,薄膜具有杀菌作用。 ud在紫外线照射下,它们表现出光催化活性,随着银含量的增加而降低。由于具有这种双重功能,TiO2-Ag纳米复合涂层具有良好的潜力,可作为长期的抗菌表面,因为可以在紫外线下周期性地实现自清洁,从而在黑暗或可见光下保持有效的抗菌活性。光。

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