Characterization of polyamide-6/ propolis blended electrospun fibers

Polyamide-6 (PA-6) nanofibers and PA-6/propolis ethanolic extract (EEP) blended fibers were prepared having electrospun their solutions in formic acid as solvent. The effect of concentrations of PA-6 and also EEP in polymer solutions on the morphology and physicochemical characteristics of their ele...

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Main Authors: Bibi Marzieh Razavizadeh, Razieh Niazmand
Format: Article
Language:English
Published: Elsevier 2020-08-01
Series:Heliyon
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2405844020316273
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spelling doaj-6f1fb516272f4ed99f9d4bc5d7565acb2020-11-25T03:21:57ZengElsevierHeliyon2405-84402020-08-0168e04784Characterization of polyamide-6/ propolis blended electrospun fibersBibi Marzieh Razavizadeh0Razieh Niazmand1Research Institute of Food Science and Technology, Department of Food Safety and Quality Control, Mashhad, Iran; Corresponding author.Research Institute of Food Science and Technology, Department of Food Chemistry, Mashhad, IranPolyamide-6 (PA-6) nanofibers and PA-6/propolis ethanolic extract (EEP) blended fibers were prepared having electrospun their solutions in formic acid as solvent. The effect of concentrations of PA-6 and also EEP in polymer solutions on the morphology and physicochemical characteristics of their electrospun fibers was investigated. The analysis of FESEM images showed the mean diameter of fibers increased from 487- 682 nm with increasing PA-6 concentration in the range of 25–40 % w/v. While, increasing EEP concentration (20–50% (w/w)) in PA-6/EEP system caused the increasing fiber mean diameters from 943- 1773 nm. Partially high aspect ratio nanofibers were observed only in the PA-6 systems. Antioxidant activity of the fibers enhanced with increasing EEP concentration in the fiber mats. FTIR spectrums and thermal properties of electrospun fibers exhibited the simple mixtures of PA-6 and EEP in blend fibers which did not contain very complex interactions.http://www.sciencedirect.com/science/article/pii/S2405844020316273Materials scienceNanotechnologyElectrospinningPolyamide-6BlendingPropolis ethanolic extract
collection DOAJ
language English
format Article
sources DOAJ
author Bibi Marzieh Razavizadeh
Razieh Niazmand
spellingShingle Bibi Marzieh Razavizadeh
Razieh Niazmand
Characterization of polyamide-6/ propolis blended electrospun fibers
Heliyon
Materials science
Nanotechnology
Electrospinning
Polyamide-6
Blending
Propolis ethanolic extract
author_facet Bibi Marzieh Razavizadeh
Razieh Niazmand
author_sort Bibi Marzieh Razavizadeh
title Characterization of polyamide-6/ propolis blended electrospun fibers
title_short Characterization of polyamide-6/ propolis blended electrospun fibers
title_full Characterization of polyamide-6/ propolis blended electrospun fibers
title_fullStr Characterization of polyamide-6/ propolis blended electrospun fibers
title_full_unstemmed Characterization of polyamide-6/ propolis blended electrospun fibers
title_sort characterization of polyamide-6/ propolis blended electrospun fibers
publisher Elsevier
series Heliyon
issn 2405-8440
publishDate 2020-08-01
description Polyamide-6 (PA-6) nanofibers and PA-6/propolis ethanolic extract (EEP) blended fibers were prepared having electrospun their solutions in formic acid as solvent. The effect of concentrations of PA-6 and also EEP in polymer solutions on the morphology and physicochemical characteristics of their electrospun fibers was investigated. The analysis of FESEM images showed the mean diameter of fibers increased from 487- 682 nm with increasing PA-6 concentration in the range of 25–40 % w/v. While, increasing EEP concentration (20–50% (w/w)) in PA-6/EEP system caused the increasing fiber mean diameters from 943- 1773 nm. Partially high aspect ratio nanofibers were observed only in the PA-6 systems. Antioxidant activity of the fibers enhanced with increasing EEP concentration in the fiber mats. FTIR spectrums and thermal properties of electrospun fibers exhibited the simple mixtures of PA-6 and EEP in blend fibers which did not contain very complex interactions.
topic Materials science
Nanotechnology
Electrospinning
Polyamide-6
Blending
Propolis ethanolic extract
url http://www.sciencedirect.com/science/article/pii/S2405844020316273
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