Colorful and facile in situ nanosilver coating on sisal/cotton interwoven fabrics mediated from European larch heartwood

Abstract This study reports on a novel coloration approach for sisal/cotton interwoven fabric via in situ synthesis of European larch (Larix decidua) heartwood-anchored sustainable nanosilver. The heartwood extracts functioned as the reducing and stabilizing agent in reaction systems. The deposited...

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Autores principales: K. M. Faridul Hasan, Péter György Horváth, Zsófia Kóczán, Miklós Bak, Tibor Alpár
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Publicado: Nature Portfolio 2021
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spelling oai:doaj.org-article:a308bae4cee54298bdf49c4a64efe7792021-11-21T12:24:31ZColorful and facile in situ nanosilver coating on sisal/cotton interwoven fabrics mediated from European larch heartwood10.1038/s41598-021-01914-y2045-2322https://doaj.org/article/a308bae4cee54298bdf49c4a64efe7792021-11-01T00:00:00Zhttps://doi.org/10.1038/s41598-021-01914-yhttps://doaj.org/toc/2045-2322Abstract This study reports on a novel coloration approach for sisal/cotton interwoven fabric via in situ synthesis of European larch (Larix decidua) heartwood-anchored sustainable nanosilver. The heartwood extracts functioned as the reducing and stabilizing agent in reaction systems. The deposited silver nanoparticles (AgNPs) over the fabric surfaces displayed brilliant coloration effects with improved fastness ratings and color strengths (K/S). The successful depositions of nanosilvers were quantified and increasing trends in K/S values with the increase in silver precursor loading were discovered. The concentrations of AgNPs deposited on fabric surfaces were found to be 16 mg/L, 323 mg/L, and 697 mg/L, which were measured through an iCP OES (atomic absorption spectroscopy) test. The K/S values obtained for different loadings of silver precursors (0.5, 1.5, and 2.5 mM (w/v)) are 2.74, 6.76, and 8.96. Morphological studies of the control and AgNP-treated fabrics also displayed a uniform and homogeneous distribution of AgNPs over the fabric surfaces. FTIR (Fourier transform infrared spectroscopy) studies of the sustainably developed materials further confirms the successful bonding between the fabrics and AgNPs. Furthermore, stability against temperature was also noticed as per TGA (thermogravimetric analysis) and DTG (derivative TG) analysis although there was a slight decline from the control sisal/cotton interwoven fabrics observed. Statistically, regression analysis and ANOVA tests were conducted to understand the significance of increased nanosilver loading on sisal/cotton interwoven fabrics. In summary, the perceived results demonstrated successful coloration and functionalization of sisal/cotton interwoven fabrics through green AgNPs, which could indicate a new milestone for industrial production units.K. M. Faridul HasanPéter György HorváthZsófia KóczánMiklós BakTibor AlpárNature PortfolioarticleMedicineRScienceQENScientific Reports, Vol 11, Iss 1, Pp 1-13 (2021)
institution DOAJ
collection DOAJ
language EN
topic Medicine
R
Science
Q
spellingShingle Medicine
R
Science
Q
K. M. Faridul Hasan
Péter György Horváth
Zsófia Kóczán
Miklós Bak
Tibor Alpár
Colorful and facile in situ nanosilver coating on sisal/cotton interwoven fabrics mediated from European larch heartwood
description Abstract This study reports on a novel coloration approach for sisal/cotton interwoven fabric via in situ synthesis of European larch (Larix decidua) heartwood-anchored sustainable nanosilver. The heartwood extracts functioned as the reducing and stabilizing agent in reaction systems. The deposited silver nanoparticles (AgNPs) over the fabric surfaces displayed brilliant coloration effects with improved fastness ratings and color strengths (K/S). The successful depositions of nanosilvers were quantified and increasing trends in K/S values with the increase in silver precursor loading were discovered. The concentrations of AgNPs deposited on fabric surfaces were found to be 16 mg/L, 323 mg/L, and 697 mg/L, which were measured through an iCP OES (atomic absorption spectroscopy) test. The K/S values obtained for different loadings of silver precursors (0.5, 1.5, and 2.5 mM (w/v)) are 2.74, 6.76, and 8.96. Morphological studies of the control and AgNP-treated fabrics also displayed a uniform and homogeneous distribution of AgNPs over the fabric surfaces. FTIR (Fourier transform infrared spectroscopy) studies of the sustainably developed materials further confirms the successful bonding between the fabrics and AgNPs. Furthermore, stability against temperature was also noticed as per TGA (thermogravimetric analysis) and DTG (derivative TG) analysis although there was a slight decline from the control sisal/cotton interwoven fabrics observed. Statistically, regression analysis and ANOVA tests were conducted to understand the significance of increased nanosilver loading on sisal/cotton interwoven fabrics. In summary, the perceived results demonstrated successful coloration and functionalization of sisal/cotton interwoven fabrics through green AgNPs, which could indicate a new milestone for industrial production units.
format article
author K. M. Faridul Hasan
Péter György Horváth
Zsófia Kóczán
Miklós Bak
Tibor Alpár
author_facet K. M. Faridul Hasan
Péter György Horváth
Zsófia Kóczán
Miklós Bak
Tibor Alpár
author_sort K. M. Faridul Hasan
title Colorful and facile in situ nanosilver coating on sisal/cotton interwoven fabrics mediated from European larch heartwood
title_short Colorful and facile in situ nanosilver coating on sisal/cotton interwoven fabrics mediated from European larch heartwood
title_full Colorful and facile in situ nanosilver coating on sisal/cotton interwoven fabrics mediated from European larch heartwood
title_fullStr Colorful and facile in situ nanosilver coating on sisal/cotton interwoven fabrics mediated from European larch heartwood
title_full_unstemmed Colorful and facile in situ nanosilver coating on sisal/cotton interwoven fabrics mediated from European larch heartwood
title_sort colorful and facile in situ nanosilver coating on sisal/cotton interwoven fabrics mediated from european larch heartwood
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/a308bae4cee54298bdf49c4a64efe779
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