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Single-Side Superhydrophobicity in Si(3)N(4)-Doped and SiO(2)-Treated Polypropylene Nonwoven Webs with Antibacterial Activity

Meltblown (MB) nonwovens as air filter materials have played an important role in protecting people from microbe infection in the COVID-19 pandemic. As the pandemic enters the third year in this current global event, it becomes more and more beneficial to develop more functional MB nonwovens with sp...

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Autores principales: Han, Ming-Chao, Cai, Shun-Zhong, Wang, Ji, He, Hong-Wei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9323961/
https://www.ncbi.nlm.nih.gov/pubmed/35890729
http://dx.doi.org/10.3390/polym14142952
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author Han, Ming-Chao
Cai, Shun-Zhong
Wang, Ji
He, Hong-Wei
author_facet Han, Ming-Chao
Cai, Shun-Zhong
Wang, Ji
He, Hong-Wei
author_sort Han, Ming-Chao
collection PubMed
description Meltblown (MB) nonwovens as air filter materials have played an important role in protecting people from microbe infection in the COVID-19 pandemic. As the pandemic enters the third year in this current global event, it becomes more and more beneficial to develop more functional MB nonwovens with special surface selectivity as well as antibacterial activities. In this article, an antibacterial polypropylene MB nonwoven doped with nano silicon nitride (Si(3)N(4)), one of ceramic materials, was developed. With the introduction of Si(3)N(4), both the average diameter of the fibers and the pore diameter and porosity of the nonwovens can be tailored. Moreover, the nonwovens having a single-side moisture transportation, which would be more comfortable in use for respirators or masks, was designed by imparting a hydrophobicity gradient through the single-side superhydrophobic finishing of reactive organic/inorganic silicon coprecipitation in situ. After a nano/micro structural SiO(2) precipitation on one side of the fabric surfaces, the contact angles were up to 161.7° from 141.0° originally. The nonwovens were evaluated on antibacterial activity, the result of which indicated that they had a high antibacterial activity when the dosage of Si(3)N(4) was 0.6 wt%. The bacteriostatic rate against E. coli and S. aureus was up to over 96%. Due to the nontoxicity and excellent antibacterial activity of Si(3)N(4), this MB nonwovens are promising as a high-efficiency air filter material, particularly during the pandemic.
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spelling pubmed-93239612022-07-27 Single-Side Superhydrophobicity in Si(3)N(4)-Doped and SiO(2)-Treated Polypropylene Nonwoven Webs with Antibacterial Activity Han, Ming-Chao Cai, Shun-Zhong Wang, Ji He, Hong-Wei Polymers (Basel) Article Meltblown (MB) nonwovens as air filter materials have played an important role in protecting people from microbe infection in the COVID-19 pandemic. As the pandemic enters the third year in this current global event, it becomes more and more beneficial to develop more functional MB nonwovens with special surface selectivity as well as antibacterial activities. In this article, an antibacterial polypropylene MB nonwoven doped with nano silicon nitride (Si(3)N(4)), one of ceramic materials, was developed. With the introduction of Si(3)N(4), both the average diameter of the fibers and the pore diameter and porosity of the nonwovens can be tailored. Moreover, the nonwovens having a single-side moisture transportation, which would be more comfortable in use for respirators or masks, was designed by imparting a hydrophobicity gradient through the single-side superhydrophobic finishing of reactive organic/inorganic silicon coprecipitation in situ. After a nano/micro structural SiO(2) precipitation on one side of the fabric surfaces, the contact angles were up to 161.7° from 141.0° originally. The nonwovens were evaluated on antibacterial activity, the result of which indicated that they had a high antibacterial activity when the dosage of Si(3)N(4) was 0.6 wt%. The bacteriostatic rate against E. coli and S. aureus was up to over 96%. Due to the nontoxicity and excellent antibacterial activity of Si(3)N(4), this MB nonwovens are promising as a high-efficiency air filter material, particularly during the pandemic. MDPI 2022-07-21 /pmc/articles/PMC9323961/ /pubmed/35890729 http://dx.doi.org/10.3390/polym14142952 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Han, Ming-Chao
Cai, Shun-Zhong
Wang, Ji
He, Hong-Wei
Single-Side Superhydrophobicity in Si(3)N(4)-Doped and SiO(2)-Treated Polypropylene Nonwoven Webs with Antibacterial Activity
title Single-Side Superhydrophobicity in Si(3)N(4)-Doped and SiO(2)-Treated Polypropylene Nonwoven Webs with Antibacterial Activity
title_full Single-Side Superhydrophobicity in Si(3)N(4)-Doped and SiO(2)-Treated Polypropylene Nonwoven Webs with Antibacterial Activity
title_fullStr Single-Side Superhydrophobicity in Si(3)N(4)-Doped and SiO(2)-Treated Polypropylene Nonwoven Webs with Antibacterial Activity
title_full_unstemmed Single-Side Superhydrophobicity in Si(3)N(4)-Doped and SiO(2)-Treated Polypropylene Nonwoven Webs with Antibacterial Activity
title_short Single-Side Superhydrophobicity in Si(3)N(4)-Doped and SiO(2)-Treated Polypropylene Nonwoven Webs with Antibacterial Activity
title_sort single-side superhydrophobicity in si(3)n(4)-doped and sio(2)-treated polypropylene nonwoven webs with antibacterial activity
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9323961/
https://www.ncbi.nlm.nih.gov/pubmed/35890729
http://dx.doi.org/10.3390/polym14142952
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