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Electroactive nanofibrous membrane with antibacterial and deodorizing properties for air filtration.

Authors :
Dou, Yuejie
Wang, Na
Zhang, Shaohua
Sun, Caihong
Chen, Jinmiao
Qu, Zhenghai
Cui, Aihua
Li, Jiwei
Source :
Journal of Hazardous Materials. May2024, Vol. 469, pN.PAG-N.PAG. 1p.
Publication Year :
2024

Abstract

Water vapor from respiration can severely accelerate the charge dissipation of the face mask, reducing filtration efficiency. Moreover, the foul odor from prolonged mask wear tends to make people remove their masks, leading to the risk of infection. In this study, an electro-blown spinning electroactive nanofibrous membrane (Zn/CB@PAN) with antibacterial and deodorization properties was prepared by adding zinc (Zn) and carbon black (CB) nanoparticles to the polyacrylonitrile (PAN) nanofibers, respectively. The filtration efficiency of Zn/CB@PAN for PM 0.3 was > 99% and could still maintain excellent durability within 4 h in a high-humidity environment (25 ℃ and RH = 95%). Moreover, the bacterial interception rate of the Zn/CB@PAN could reach 99.99%, and it can kill intercepted bacteria. In addition, the deodorization rate of Zn/CB@PAN in the moist state for acetic acid was 93.75% and ammonia was 95.23%, respectively. The excellent filtering, antibacterial, and deodorizing performance of Zn/CB@PAN can be attributed to the synergistic effect of breath-induced Zn/CB galvanic couples' electroactivity, released metal ions, and generated reactive oxygen species. The developed Zn/CB@PAN could capture and kill airborne environmental pathogens under humid environments and deodorize odors from prolonged wear, holding promise for broad applications as personal protective masks. [Display omitted] • A breath-induced electroactive nanofibrous membrane was successfully fabricated. • The nanofibrous membrane exhibits high filtration efficiency in the high humidity environment. • The nanofibrous membrane can capture and sterilize bacteria contaminants in the air effectively. • The nanofibrous membrane exhibits excellent deodorization performance. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
03043894
Volume :
469
Database :
Academic Search Index
Journal :
Journal of Hazardous Materials
Publication Type :
Academic Journal
Accession number :
176391923
Full Text :
https://doi.org/10.1016/j.jhazmat.2024.134064