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Preparation and Mechanism of Cu-Decorated TiO2-ZrO2 Films Showing Accelerated Bacterial Inactivation

机译:加速细菌灭活的Cu修饰TiO2-ZrO2薄膜的制备及机理

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摘要

Antibacterial robust, uniform TiO2-ZrO2 films on polyester (PES) under low intensity sunlight irradiation made up by equal amounts of TiO2 and ZrO2 exhibited a much higher bacterial inactivation kinetics compared to pure TiO2 or ZrO2. The TiO2-ZrO2 matrix was found to introduce a drastic increase in the Cu-dopant promoter enhancing bacterial inactivation compared to Cu sputtered in the same amount on PES. Furthermore, the bacterial inactivation was accelerated by a factor close to three, by Cu- on TiO2-ZrO2 at extremely low levels similar to 0.01%. Evidence is presented by X-ray photoelectron spectroscopy for redox catalysis taking place during bacterial inactivation. The TiO2-ZrO2-Cu band gap is estimated and the film properties were fully characterized. Evidence is provided for the photogenerated radicals intervening in the bacterial inactivation. The photoinduced TiO2-ZrO2-Cu interfacial charge transfer is discussed in term of the electronic band positions of the binary oxide and the Cu TiO2 intragap state
机译:与纯TiO2或ZrO2相比,由等量的TiO2和ZrO2组成的低强度阳光照射在聚酯(PES)上的抗菌坚固,均匀的TiO2-ZrO2膜表现出更高的细菌灭活动力学。与在PES上以相同量溅射的Cu相比,发现TiO2-ZrO2基质极大地增加了Cu掺杂促进剂,增强了细菌的灭活作用。此外,在TiO2-ZrO2上的Cu-以极低的水平(接近0.01%)将细菌灭活速度提高了近三倍。 X射线光电子能谱显示了细菌灭活过程中发生的氧化还原催化作用的证据。估算了TiO2-ZrO2-Cu的带隙,并充分表征了薄膜的性能。提供了光生自由基介入细菌灭活的证据。根据二元氧化物的电子能带位置和Cu TiO2的能隙状态讨论了光诱导的TiO2-ZrO2-Cu界面电荷转移

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