Green options for imparting antibacterial functionality to cotton fabrics
This study demonstrated that antibacterial cellulosic textiles can be fabricated in eco-friendly manner by grafting of monochlorotriazinyl β-cyclodextin (MCT-βCD) onto knitted and woven cotton fabrics followed by post-loading of any of the green active ingredients namely Rosemary oil, Lavender oil,...
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Published in: | International journal of biological macromolecules Vol. 111; pp. 526 - 533 |
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Language: | English |
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01-05-2018
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Abstract | This study demonstrated that antibacterial cellulosic textiles can be fabricated in eco-friendly manner by grafting of monochlorotriazinyl β-cyclodextin (MCT-βCD) onto knitted and woven cotton fabrics followed by post-loading of any of the green active ingredients namely Rosemary oil, Lavender oil, Clove oil, Cinnamon oil, Aloe vera gel, Vanillin, Ag-ions, Natural Yellow 7 and Natural Red 25 dyes into the hydrophobic cavities of grafted β-CD moieties. Some of the grafted, post-loaded fabric samples were characterized by FTIR, SEM, and EDS analysis. The enhancement in the imparted antibacterial functionality as well as durability to wash are governed by type of cellulosic substrate, kind, chemistry, antibacterial activity as well as extent of inclusion and subsequent release of the hosted bioactive agent. The obtained results revealed that the antibacterial efficacy follows the deceasing orders: i) knitted fabric > woven fabric and ii) Ag-ions > Lavender oil > Natural Yellow 7 > Aloe vera > Cinnamon oil > Natural Red 25 > Vanillin > Clove oil > Rosemary oil-loaded fabric sample, keeping other parameters constant.
•Grafting of MCT- βCD onto cellulose structure•Inclusion of green active ingredients into hydrophobic cavities•Antibacterial cotton fabrics with remarkable functionality and durability•Eco-friendly finishing process and functionalized cotton cellulose |
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AbstractList | This study demonstrated that antibacterial cellulosic textiles can be fabricated in eco-friendly manner by grafting of monochlorotriazinyl β-cyclodextin (MCT-βCD) onto knitted and woven cotton fabrics followed by post-loading of any of the green active ingredients namely Rosemary oil, Lavender oil, Clove oil, Cinnamon oil, Aloe vera gel, Vanillin, Ag-ions, Natural Yellow 7 and Natural Red 25 dyes into the hydrophobic cavities of grafted β-CD moieties. Some of the grafted, post-loaded fabric samples were characterized by FTIR, SEM, and EDS analysis. The enhancement in the imparted antibacterial functionality as well as durability to wash are governed by type of cellulosic substrate, kind, chemistry, antibacterial activity as well as extent of inclusion and subsequent release of the hosted bioactive agent. The obtained results revealed that the antibacterial efficacy follows the deceasing orders: i) knitted fabric > woven fabric and ii) Ag-ions > Lavender oil > Natural Yellow 7 > Aloe vera > Cinnamon oil > Natural Red 25 > Vanillin > Clove oil > Rosemary oil-loaded fabric sample, keeping other parameters constant.
•Grafting of MCT- βCD onto cellulose structure•Inclusion of green active ingredients into hydrophobic cavities•Antibacterial cotton fabrics with remarkable functionality and durability•Eco-friendly finishing process and functionalized cotton cellulose This study demonstrated that antibacterial cellulosic textiles can be fabricated in eco-friendly manner by grafting of monochlorotriazinyl β-cyclodextin (MCT-βCD) onto knitted and woven cotton fabrics followed by post-loading of any of the green active ingredients namely Rosemary oil, Lavender oil, Clove oil, Cinnamon oil, Aloe vera gel, Vanillin, Ag-ions, Natural Yellow 7 and Natural Red 25 dyes into the hydrophobic cavities of grafted β-CD moieties. Some of the grafted, post-loaded fabric samples were characterized by FTIR, SEM, and EDS analysis. The enhancement in the imparted antibacterial functionality as well as durability to wash are governed by type of cellulosic substrate, kind chemistry antibacterial activity as well as extent of inclusion and subsequent release of the hosted bioactive agent. The obtained results revealed that the antibacterial efficacy follows the deceasing orders: i) knitted fabric > woven fabric and ii) Ag-ions > Lavender oil > Natural Yellow 7 > Aloe vera > Cinnamon oil > Natural Red 25 > Vanillin > Clove oil > Rosemary oil-loaded fabric sample, keeping other parameters constant. This study demonstrated that antibacterial cellulosic textiles can be fabricated in eco-friendly manner by grafting of monochlorotriazinyl β-cyclodextin (MCT-βCD) onto knitted and woven cotton fabrics followed by post-loading of any of the green active ingredients namely Rosemary oil, Lavender oil, Clove oil, Cinnamon oil, Aloe vera gel, Vanillin, Ag-ions, Natural Yellow 7 and Natural Red 25 dyes into the hydrophobic cavities of grafted β-CD moieties. Some of the grafted, post-loaded fabric samples were characterized by FTIR, SEM, and EDS analysis. The enhancement in the imparted antibacterial functionality as well as durability to wash are governed by type of cellulosic substrate, kind, chemistry, antibacterial activity as well as extent of inclusion and subsequent release of the hosted bioactive agent. The obtained results revealed that the antibacterial efficacy follows the deceasing orders: i) knitted fabric > woven fabric and ii) Ag-ions > Lavender oil > Natural Yellow 7 > Aloe vera > Cinnamon oil > Natural Red 25 > Vanillin > Clove oil > Rosemary oil-loaded fabric sample, keeping other parameters constant. |
Author | Abd El-Ghany, Nahed A. Eid, Basma M. Ibrahim, Nabil A. Mabrouk, Eman M. |
Author_xml | – sequence: 1 givenname: Nabil A. orcidid: 0000-0002-8531-9461 surname: Ibrahim fullname: Ibrahim, Nabil A. email: nabibrahim49@yahoo.co.uk organization: Textile Research Division, National Research Centre, Scopus afflitiation ID 60014618, (El-Behouth St.), Dokki, Giza, Egypt – sequence: 2 givenname: Nahed A. surname: Abd El-Ghany fullname: Abd El-Ghany, Nahed A. organization: Chemistry Department, Faculty of Science, Cairo University, Egypt – sequence: 3 givenname: Basma M. surname: Eid fullname: Eid, Basma M. organization: Textile Research Division, National Research Centre, Scopus afflitiation ID 60014618, (El-Behouth St.), Dokki, Giza, Egypt – sequence: 4 givenname: Eman M. surname: Mabrouk fullname: Mabrouk, Eman M. organization: Chemistry Department, Faculty of Science, Cairo University, Egypt |
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Keywords | Host ingredients MCT-βCD Cotton fabric Antibacterial functional finish Inclusion compound |
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SubjectTerms | Antibacterial functional finish Cotton fabric Host ingredients Inclusion compound MCT-βCD |
Title | Green options for imparting antibacterial functionality to cotton fabrics |
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