Flame retardant, antimicrobial, and mechanical properties of multifunctional polyurethane nanofibers containing tannic acid-coated reduced graphene oxide

Graphene nanoparticles coated with tannic acid were synthesized as non-halogen flame retardants; further, these nanoparticles were electrospun with polyurethane to produce multifunctional composite nanofibers. The composite nanofibers showed improved flame retardant, antimicrobial, and mechanical pr...

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Autores principales: Young Nam Kim, Yu-Mi Ha, Jae Eun Park, Young-O Kim, Jun Young Jo, Haksoo Han, Doh C. Lee, Jaewoo Kim, Yong Chae Jung
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Publicado: Elsevier 2021
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Acceso en línea:https://doaj.org/article/c2739b9d593c4da191465bb5cb61ae73
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spelling oai:doaj.org-article:c2739b9d593c4da191465bb5cb61ae732021-11-24T04:26:07ZFlame retardant, antimicrobial, and mechanical properties of multifunctional polyurethane nanofibers containing tannic acid-coated reduced graphene oxide0142-941810.1016/j.polymertesting.2020.107006https://doaj.org/article/c2739b9d593c4da191465bb5cb61ae732021-01-01T00:00:00Zhttp://www.sciencedirect.com/science/article/pii/S0142941820322352https://doaj.org/toc/0142-9418Graphene nanoparticles coated with tannic acid were synthesized as non-halogen flame retardants; further, these nanoparticles were electrospun with polyurethane to produce multifunctional composite nanofibers. The composite nanofibers showed improved flame retardant, antimicrobial, and mechanical properties with increasing amounts of bio-based, non-halogen flame retardant. For instance, at 5 wt% of flame retardant, the peak heat release rate was reduced from 340.75 to 235.23 W/g along with 500% and 135% improvement in the antimicrobial activity and Young's modulus, respectively, compared to neat polyurethane fibers. These multifunctional composite nanofibers have potential applications in various fields, such as automobile, construction, and biomedical device.Young Nam KimYu-Mi HaJae Eun ParkYoung-O KimJun Young JoHaksoo HanDoh C. LeeJaewoo KimYong Chae JungElsevierarticleNanofiberFlame retardantAntimicrobialReinforcingTannic acidPolymers and polymer manufactureTP1080-1185ENPolymer Testing, Vol 93, Iss , Pp 107006- (2021)
institution DOAJ
collection DOAJ
language EN
topic Nanofiber
Flame retardant
Antimicrobial
Reinforcing
Tannic acid
Polymers and polymer manufacture
TP1080-1185
spellingShingle Nanofiber
Flame retardant
Antimicrobial
Reinforcing
Tannic acid
Polymers and polymer manufacture
TP1080-1185
Young Nam Kim
Yu-Mi Ha
Jae Eun Park
Young-O Kim
Jun Young Jo
Haksoo Han
Doh C. Lee
Jaewoo Kim
Yong Chae Jung
Flame retardant, antimicrobial, and mechanical properties of multifunctional polyurethane nanofibers containing tannic acid-coated reduced graphene oxide
description Graphene nanoparticles coated with tannic acid were synthesized as non-halogen flame retardants; further, these nanoparticles were electrospun with polyurethane to produce multifunctional composite nanofibers. The composite nanofibers showed improved flame retardant, antimicrobial, and mechanical properties with increasing amounts of bio-based, non-halogen flame retardant. For instance, at 5 wt% of flame retardant, the peak heat release rate was reduced from 340.75 to 235.23 W/g along with 500% and 135% improvement in the antimicrobial activity and Young's modulus, respectively, compared to neat polyurethane fibers. These multifunctional composite nanofibers have potential applications in various fields, such as automobile, construction, and biomedical device.
format article
author Young Nam Kim
Yu-Mi Ha
Jae Eun Park
Young-O Kim
Jun Young Jo
Haksoo Han
Doh C. Lee
Jaewoo Kim
Yong Chae Jung
author_facet Young Nam Kim
Yu-Mi Ha
Jae Eun Park
Young-O Kim
Jun Young Jo
Haksoo Han
Doh C. Lee
Jaewoo Kim
Yong Chae Jung
author_sort Young Nam Kim
title Flame retardant, antimicrobial, and mechanical properties of multifunctional polyurethane nanofibers containing tannic acid-coated reduced graphene oxide
title_short Flame retardant, antimicrobial, and mechanical properties of multifunctional polyurethane nanofibers containing tannic acid-coated reduced graphene oxide
title_full Flame retardant, antimicrobial, and mechanical properties of multifunctional polyurethane nanofibers containing tannic acid-coated reduced graphene oxide
title_fullStr Flame retardant, antimicrobial, and mechanical properties of multifunctional polyurethane nanofibers containing tannic acid-coated reduced graphene oxide
title_full_unstemmed Flame retardant, antimicrobial, and mechanical properties of multifunctional polyurethane nanofibers containing tannic acid-coated reduced graphene oxide
title_sort flame retardant, antimicrobial, and mechanical properties of multifunctional polyurethane nanofibers containing tannic acid-coated reduced graphene oxide
publisher Elsevier
publishDate 2021
url https://doaj.org/article/c2739b9d593c4da191465bb5cb61ae73
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