纳米技术
个人防护装备
化学
材料科学
医学
2019年冠状病毒病(COVID-19)
传染病(医学专业)
病理
疾病
作者
Yanjing Wang,Yanfeng Shi,Junrong Chen,Shang Wang,Xiaoyan Liu,Miao Liu,Hao Shi,Han Zhang,Yuanhong Xu
出处
期刊:Nano Letters
[American Chemical Society]
日期:2025-04-24
卷期号:25 (18): 7393-7402
标识
DOI:10.1021/acs.nanolett.5c00668
摘要
The development of personal protective equipment (PPE) is essential to control the spread of infectious diseases. However, traditional PPE has significant drawbacks, such as a lack of antibacterial capacity and nonreusability, which may result in direct or indirect secondary infections. Herein, we propose an octahedral (Fe-O6) Fe-gallate (Fe-GA) metal-organic framework nanozyme with light-enhanced oxidase-like (OXD-like) activity and extend the use onto nonwoven fabric (Fe-GA/NWF) by hot pressing. Specifically, visible-light-mediated carrier migration and the activity of the OXD-like species synergistically enhance the production of reactive oxygen species, achieving superior antibacterial effects without the addition of any chemical additives. In this case, Fe-GA/NWF spontaneously inactivates over 99.9% of real microbial aerosols and demonstrates excellent mechanical properties, reusability (15 cycles), and biocompatibility. Moreover, Fe-GA/NWF can be used as an ideal antibacterial platform for KN95 masks and protective clothing and can be extended to other substrates. This work provides a promising strategy to develop self-antibacterial PPE in complex environments.
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