光催化
涂层
多酚
材料科学
纳米技术
化学
聚酯纤维
级联反应
机制(生物学)
化学工程
组合化学
催化作用
有机化学
抗氧化剂
哲学
认识论
工程类
作者
Ting Du,Shaochi Wang,Jianxing Feng,Yizhong Shen,Jianlong Wang,Wentao Zhang
出处
期刊:Nano Letters
[American Chemical Society]
日期:2023-10-11
卷期号:23 (20): 9563-9570
被引量:31
标识
DOI:10.1021/acs.nanolett.3c03142
摘要
Traditional disposable personal protective equipment (PPE) only blocks pathogenic bacteria by mechanical filtration, with the risk of recontamination and transmission remaining. Herein, inspired by phenolic-enabled nanotechnology (PEN), we proposed engineered polyphenol coatings by plant-derived aromatic aldehydes and metal involvement, denoted as FQM, to obtain the desired photocatalysis-self-Fenton antibacterial performance. Experiments and theoretical analysis proved the dual mechanism of Fe-induced enhancement: (1) tuning of molecular structure realized improved optical properties; (2) Fe(III)/Fe(II) triggered photocatalytic cascade self-Fenton reaction. Mechanism study reveals FQM killing bacteria by direct-contact ROS attack and gene regulation. Further, the FQM was developed as the ideal antibacterial coating on different fabrics (cloth cotton, polyester, and N95 mask), killing more than 93% of bacteria after 5 cycles of use. Such photocatalysis-self-Fenton coatings based on engineered polyphenols endowed with desirable safety, sustainability, and efficient antibacterial features are promising solutions to meet the challenges of the currently available PPE.
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