Manufacture of Coated Cotton Fabric Anti-bacterial Nano Thin Film by Sequential Immersion – Sol- Gel Technique

Antibacterial fabrics were papered by using cotton fibers, CuSO4: 5H2O, ZnSO4 and TiO2. These cotton fibers were coated by nano thin film consists of titanium oxide, copper oxide and zinc oxide. The study of structural properties by XRD had indicated that the coated fabric thin film was polycrystall...

Full description

Bibliographic Details
Main Authors: Hayder Mohammed Ajeel, Abrar Natik Mohammed, Abd Jalel Mohammed Hashem
Format: Article
Language:English
Published: Unviversity of Technology- Iraq 2015-07-01
Series:Engineering and Technology Journal
Subjects:
Online Access:https://etj.uotechnology.edu.iq/article_116256_af2f10b9a616f04e4d19d7f7719df678.pdf
_version_ 1797325823259181056
author Hayder Mohammed Ajeel
Abrar Natik Mohammed
Abd Jalel Mohammed Hashem
author_facet Hayder Mohammed Ajeel
Abrar Natik Mohammed
Abd Jalel Mohammed Hashem
author_sort Hayder Mohammed Ajeel
collection DOAJ
description Antibacterial fabrics were papered by using cotton fibers, CuSO4: 5H2O, ZnSO4 and TiO2. These cotton fibers were coated by nano thin film consists of titanium oxide, copper oxide and zinc oxide. The study of structural properties by XRD had indicated that the coated fabric thin film was polycrystalline. The topography of the thin films surface was identified by using a scanning electronic microscope (SEM) and optical microscope (OM). Optical properties were measured using optical spectrometer, the optical properties improve lead to increase in the effectiveness of anti-bacterial fabric during add titanium dioxide and zinc oxide to coated fabric by copper oxide, as well as improve the biological activity of fabric the thin film using the substance added (Methanol Sulphate) to a chemical solution during the initial preparation process of the coating fabric by oxide copper thin film. Biological characteristics have been studied for fabric against bacteria types Escherichia coli, Staphylococcus aureus and Bacillus cereus.
first_indexed 2024-03-08T06:14:52Z
format Article
id doaj.art-caade47953ea483f92298d26517cedeb
institution Directory Open Access Journal
issn 1681-6900
2412-0758
language English
last_indexed 2024-03-08T06:14:52Z
publishDate 2015-07-01
publisher Unviversity of Technology- Iraq
record_format Article
series Engineering and Technology Journal
spelling doaj.art-caade47953ea483f92298d26517cedeb2024-02-04T17:28:29ZengUnviversity of Technology- IraqEngineering and Technology Journal1681-69002412-07582015-07-01336B1019102610.30684/etj.2015.116256116256Manufacture of Coated Cotton Fabric Anti-bacterial Nano Thin Film by Sequential Immersion – Sol- Gel TechniqueHayder Mohammed AjeelAbrar Natik MohammedAbd Jalel Mohammed HashemAntibacterial fabrics were papered by using cotton fibers, CuSO4: 5H2O, ZnSO4 and TiO2. These cotton fibers were coated by nano thin film consists of titanium oxide, copper oxide and zinc oxide. The study of structural properties by XRD had indicated that the coated fabric thin film was polycrystalline. The topography of the thin films surface was identified by using a scanning electronic microscope (SEM) and optical microscope (OM). Optical properties were measured using optical spectrometer, the optical properties improve lead to increase in the effectiveness of anti-bacterial fabric during add titanium dioxide and zinc oxide to coated fabric by copper oxide, as well as improve the biological activity of fabric the thin film using the substance added (Methanol Sulphate) to a chemical solution during the initial preparation process of the coating fabric by oxide copper thin film. Biological characteristics have been studied for fabric against bacteria types Escherichia coli, Staphylococcus aureus and Bacillus cereus.https://etj.uotechnology.edu.iq/article_116256_af2f10b9a616f04e4d19d7f7719df678.pdfantibacterial fabricsem and thin film nanostructure
spellingShingle Hayder Mohammed Ajeel
Abrar Natik Mohammed
Abd Jalel Mohammed Hashem
Manufacture of Coated Cotton Fabric Anti-bacterial Nano Thin Film by Sequential Immersion – Sol- Gel Technique
Engineering and Technology Journal
antibacterial fabric
sem and thin film nanostructure
title Manufacture of Coated Cotton Fabric Anti-bacterial Nano Thin Film by Sequential Immersion – Sol- Gel Technique
title_full Manufacture of Coated Cotton Fabric Anti-bacterial Nano Thin Film by Sequential Immersion – Sol- Gel Technique
title_fullStr Manufacture of Coated Cotton Fabric Anti-bacterial Nano Thin Film by Sequential Immersion – Sol- Gel Technique
title_full_unstemmed Manufacture of Coated Cotton Fabric Anti-bacterial Nano Thin Film by Sequential Immersion – Sol- Gel Technique
title_short Manufacture of Coated Cotton Fabric Anti-bacterial Nano Thin Film by Sequential Immersion – Sol- Gel Technique
title_sort manufacture of coated cotton fabric anti bacterial nano thin film by sequential immersion sol gel technique
topic antibacterial fabric
sem and thin film nanostructure
url https://etj.uotechnology.edu.iq/article_116256_af2f10b9a616f04e4d19d7f7719df678.pdf
work_keys_str_mv AT haydermohammedajeel manufactureofcoatedcottonfabricantibacterialnanothinfilmbysequentialimmersionsolgeltechnique
AT abrarnatikmohammed manufactureofcoatedcottonfabricantibacterialnanothinfilmbysequentialimmersionsolgeltechnique
AT abdjalelmohammedhashem manufactureofcoatedcottonfabricantibacterialnanothinfilmbysequentialimmersionsolgeltechnique