材料科学
光催化
兴奋剂
氧气
光化学
活性氧
格子(音乐)
化学工程
纳米技术
催化作用
光电子学
有机化学
生物
生物化学
化学
物理
声学
工程类
作者
Rong-Li Deng,Xiangmei Liu,Jin Huang,Yi Wang,Dafu Chen,Chaofeng Wang,Khin Wee Lai,Congyang Mao,Guangren Qian,Yufeng Zheng,Shuilin Wu
标识
DOI:10.1002/adfm.202500256
摘要
Abstract Contact infection is accelerating the spread of pathogenic bacteria, threatening the health of people all over the world. Herein, photoresponsive TiO 2 /N‐doped ZnO (TiO 2 /N‐ZnO) nanofilms are synthesized using atomic layer deposition and the sol–gel method to rapidly kill bacteria on electronic touch screens by strengthened photocatalytic sterilization. The enhancement of the photocatalytic performance of TiO 2 /ZnO is significantly attributed to the oxygen vacancy and crystal defect induced by nitrogen element doping, leading to the production of an increased quantity of reactive oxygen species from TiO 2 /N‐ZnO. Further, when bacteria engage with the nanofilm, there is an occurrence of electron transfer between the TiO 2 /N‐ZnO and the bacterial film, thereby consequently disturbing the electron equilibrium on the bacterial film. Upon exposure to simulated sunlight for a duration of 3 min (for Staphylococcus aureus ; S. aureus ) or 10 min (for Escherichia coli ; E. coli ), TiO 2 /N‐ZnO demonstrates superior antibacterial effects (>95%) on both bacterial strains. With the illumination time extended to 20 min, the antibacterial efficacy of TiO 2 /N‐ZnO against S. aureus and E. coli reaches up to 100%. Concurrently, the TiO 2 /N‐ZnO nanofilms demonstrate commendable light transmittance (>85%) and biocompatibility. As such, this study may offer a potential methodology for antimicrobial applications in electronic touch screens.
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