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Multi-functional Cotton Fabrics Using Nano-Technology and Environmentally Friendly Finishing Agents

Abstract
TiO2 nanoparticles were prepared using sol-gel technique. The prepared nanoparticles were analyzed using transmission electron microscope (TEM). Cotton fabrics were treated using prepared TiO2 nanoparticles in presence of citric acid and commercially flame retarding agent named Flovan CWF to produce cotton fabrics having multi-functional properties (anti-crease, self cleaning, and flame retardant)...
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Keywords
Citric acid
Thermogravimetric analysis
Materials science
Scanning electron microscope
Ultimate tensile strength
Composite material
Fire retardant
Nanoparticle
Environmentally friendly
Elongation
Transmission electron microscopy
Nano-
Contact angle
Chemical engineering
Nanotechnology
Chemistry
Organic chemistry
Ecology
Biology
Engineering


pdf file

Multi-functional Cotton Fabrics Using Nano-Technology and Environmentally Friendly Finishing Agents
pdf file

Multi-functional Cotton Fabrics Using Nano-Technology and Environmentally Friendly Finishing Agents

Abstract
TiO2 nanoparticles were prepared using sol-gel technique. The prepared nanoparticles were analyzed using transmission electron microscope (TEM). Cotton fabrics were treated using prepared TiO2 nanoparticles in presence of citric acid and commercially flame retarding agent named Flovan CWF to produce cotton fabrics having multi-functional properties (anti-crease, self cleaning, and flame retardant)...
View PDF
Keywords
Citric acid
Thermogravimetric analysis
Materials science
Scanning electron microscope
Ultimate tensile strength
Composite material
Fire retardant
Nanoparticle
Environmentally friendly
Elongation
Transmission electron microscopy
Nano-
Contact angle
Chemical engineering
Nanotechnology
Chemistry
Organic chemistry
Ecology
Biology
Engineering


pdf file