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Quality of Cotton and cotton/elastane Single Jersey Knitted Fabrics before and after Softening and in Situ Synthesis of Cu-based Nanoparticles

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2022
Quality_of_Cotton_pub_2022.pdf (2.947Mb)
Authors
Ivanovska, Aleksandra
Lađarević, Jelena
Asanović, Koviljka
Barać, Nemanja
Mihajlovski, Katarina
Kostić, Mirjana
Mangovska, Biljana
Article (Published version)
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Abstract
The quality of cotton and cotton/elastane single jersey knitted fabrics before and after softening was evaluated through their mechanical properties, pilling, and volume electrical resistivity. Elastane-containing fabrics have higher bursting elongation and stiffness, lower bursting strength, the same or higher pilling grade, and 23–27% lower electrical resistivities compared to 100% cotton due to the increased compactness that enables better contact between the loops, and easier flow of charge through them. Softening does not affect or slightly improves the fabric pilling (up to 1000 cycles); it decreases fabrics’ stiffness and increases their bursting strength and electrical resistivities. The last one was significantly decreased after the in situ synthesis of Cu-based nanoparticles on fabrics’ surfaces. Namely, fabrics were first treated with sodium alginate whose carboxylate groups crosslinked Cu2+-ions (from CuSO4 solution) that were further reduced with ascorbic acid. In situ syn...thesis of Cu-based nanoparticles (detected by FESEM) improves the fabrics’ quality and enables obtaining multifunctional fabrics having 3.4–9.6 times lower resistivities, which are in line with the content of Cu after reduction (determined using ICP-OES), up to 2.5 times higher antioxidant activity and provided maximum microbial reduction for E. Coli, S. aureus, and C. albicans.

Keywords:
antioxidant and antimicrobial activity / Cotton / Cu-based nanoparticles / elastane / mechanical properties / softener
Source:
Journal of Natural Fibers, 2022, 19, 16, 15139-15150
Publisher:
  • Taylor and Francis Ltd.
Funding / projects:
  • Ministry of Education, Science and Technological Development, Republic of Serbia, Grant no. 200287 (Innovation Center of the Faculty of Technology and Metallurgy) (RS-200287)
  • Ministry of Education, Science and Technological Development, Republic of Serbia, Grant no. 200135 (University of Belgrade, Faculty of Technology and Metallurgy) (RS-200135)

DOI: 10.1080/15440478.2022.2070328

ISSN: 1544-0478

WoS: 00080089030000

Scopus: 2-s2.0-85130872111
[ Google Scholar ]
3
URI
http://TechnoRep.tmf.bg.ac.rs/handle/123456789/5968
Collections
  • Radovi istraživača (Inovacioni centar) / Researchers’ publications (Innovation Centre)
  • Radovi istraživača / Researchers’ publications (TMF)
Institution/Community
Inovacioni centar
TY  - JOUR
AU  - Ivanovska, Aleksandra
AU  - Lađarević, Jelena
AU  - Asanović, Koviljka
AU  - Barać, Nemanja
AU  - Mihajlovski, Katarina
AU  - Kostić, Mirjana
AU  - Mangovska, Biljana
PY  - 2022
UR  - http://TechnoRep.tmf.bg.ac.rs/handle/123456789/5968
AB  - The quality of cotton and cotton/elastane single jersey knitted fabrics before and after softening was evaluated through their mechanical properties, pilling, and volume electrical resistivity. Elastane-containing fabrics have higher bursting elongation and stiffness, lower bursting strength, the same or higher pilling grade, and 23–27% lower electrical resistivities compared to 100% cotton due to the increased compactness that enables better contact between the loops, and easier flow of charge through them. Softening does not affect or slightly improves the fabric pilling (up to 1000 cycles); it decreases fabrics’ stiffness and increases their bursting strength and electrical resistivities. The last one was significantly decreased after the in situ synthesis of Cu-based nanoparticles on fabrics’ surfaces. Namely, fabrics were first treated with sodium alginate whose carboxylate groups crosslinked Cu2+-ions (from CuSO4 solution) that were further reduced with ascorbic acid. In situ synthesis of Cu-based nanoparticles (detected by FESEM) improves the fabrics’ quality and enables obtaining multifunctional fabrics having 3.4–9.6 times lower resistivities, which are in line with the content of Cu after reduction (determined using ICP-OES), up to 2.5 times higher antioxidant activity and provided maximum microbial reduction for E. Coli, S. aureus, and C. albicans.
PB  - Taylor and Francis Ltd.
T2  - Journal of Natural Fibers
T1  - Quality of Cotton and cotton/elastane Single Jersey Knitted Fabrics before and after Softening and in Situ Synthesis of Cu-based Nanoparticles
EP  - 15150
IS  - 16
SP  - 15139
VL  - 19
DO  - 10.1080/15440478.2022.2070328
ER  - 
@article{
author = "Ivanovska, Aleksandra and Lađarević, Jelena and Asanović, Koviljka and Barać, Nemanja and Mihajlovski, Katarina and Kostić, Mirjana and Mangovska, Biljana",
year = "2022",
abstract = "The quality of cotton and cotton/elastane single jersey knitted fabrics before and after softening was evaluated through their mechanical properties, pilling, and volume electrical resistivity. Elastane-containing fabrics have higher bursting elongation and stiffness, lower bursting strength, the same or higher pilling grade, and 23–27% lower electrical resistivities compared to 100% cotton due to the increased compactness that enables better contact between the loops, and easier flow of charge through them. Softening does not affect or slightly improves the fabric pilling (up to 1000 cycles); it decreases fabrics’ stiffness and increases their bursting strength and electrical resistivities. The last one was significantly decreased after the in situ synthesis of Cu-based nanoparticles on fabrics’ surfaces. Namely, fabrics were first treated with sodium alginate whose carboxylate groups crosslinked Cu2+-ions (from CuSO4 solution) that were further reduced with ascorbic acid. In situ synthesis of Cu-based nanoparticles (detected by FESEM) improves the fabrics’ quality and enables obtaining multifunctional fabrics having 3.4–9.6 times lower resistivities, which are in line with the content of Cu after reduction (determined using ICP-OES), up to 2.5 times higher antioxidant activity and provided maximum microbial reduction for E. Coli, S. aureus, and C. albicans.",
publisher = "Taylor and Francis Ltd.",
journal = "Journal of Natural Fibers",
title = "Quality of Cotton and cotton/elastane Single Jersey Knitted Fabrics before and after Softening and in Situ Synthesis of Cu-based Nanoparticles",
pages = "15150-15139",
number = "16",
volume = "19",
doi = "10.1080/15440478.2022.2070328"
}
Ivanovska, A., Lađarević, J., Asanović, K., Barać, N., Mihajlovski, K., Kostić, M.,& Mangovska, B.. (2022). Quality of Cotton and cotton/elastane Single Jersey Knitted Fabrics before and after Softening and in Situ Synthesis of Cu-based Nanoparticles. in Journal of Natural Fibers
Taylor and Francis Ltd.., 19(16), 15139-15150.
https://doi.org/10.1080/15440478.2022.2070328
Ivanovska A, Lađarević J, Asanović K, Barać N, Mihajlovski K, Kostić M, Mangovska B. Quality of Cotton and cotton/elastane Single Jersey Knitted Fabrics before and after Softening and in Situ Synthesis of Cu-based Nanoparticles. in Journal of Natural Fibers. 2022;19(16):15139-15150.
doi:10.1080/15440478.2022.2070328 .
Ivanovska, Aleksandra, Lađarević, Jelena, Asanović, Koviljka, Barać, Nemanja, Mihajlovski, Katarina, Kostić, Mirjana, Mangovska, Biljana, "Quality of Cotton and cotton/elastane Single Jersey Knitted Fabrics before and after Softening and in Situ Synthesis of Cu-based Nanoparticles" in Journal of Natural Fibers, 19, no. 16 (2022):15139-15150,
https://doi.org/10.1080/15440478.2022.2070328 . .

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