Uniform dispersion of silica nanoparticles on dyed cellulose surface by sol–gel method

Cellulose fabric is dyed with Reactive Red B-3BF. Dispersion of silica nanoparticles on dyed cellulose surface is investigated. Novel color cellulose/silica surface is prepared and characterized by FT-IR, AFM and FSEM. The color data of the cellulose/silica surface are discussed by reflectance spect...

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Published inCarbohydrate polymers Vol. 79; no. 3; pp. 578 - 583
Main Authors Hou, Aiqin, Yu, Yanhong, Chen, Huawei
Format Journal Article
LanguageEnglish
Published Kidlington Elsevier Ltd 11.02.2010
Elsevier
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Abstract Cellulose fabric is dyed with Reactive Red B-3BF. Dispersion of silica nanoparticles on dyed cellulose surface is investigated. Novel color cellulose/silica surface is prepared and characterized by FT-IR, AFM and FSEM. The color data of the cellulose/silica surface are discussed by reflectance spectra, color yield ( K/ S). The results show that silica nanoparticles form smooth film with high degree of homogeneity on the cellulose surface. The surface color shade of the dyed cellulose can be affected by sol–gel. The K/ S of two sample surfaces have noticeable increase. With increasing silica nanoparticles, the K/ S of samples have further improvement. The thin film imparts low reflectance index and increases color yield.
AbstractList Cellulose fabric is dyed with Reactive Red B-3BF. Dispersion of silica nanoparticles on dyed cellulose surface is investigated. Novel color cellulose/silica surface is prepared and characterized by FT-IR, AFM and FSEM. The color data of the cellulose/silica surface are discussed by reflectance spectra, color yield (K/S). The results show that silica nanoparticles form smooth film with high degree of homogeneity on the cellulose surface. The surface color shade of the dyed cellulose can be affected by sol–gel. The K/S of two sample surfaces have noticeable increase. With increasing silica nanoparticles, the K/S of samples have further improvement. The thin film imparts low reflectance index and increases color yield.
Cellulose fabric is dyed with Reactive Red B-3BF. Dispersion of silica nanoparticles on dyed cellulose surface is investigated. Novel color cellulose/silica surface is prepared and characterized by FT-IR, AFM and FSEM. The color data of the cellulose/silica surface are discussed by reflectance spectra, color yield ( K/ S). The results show that silica nanoparticles form smooth film with high degree of homogeneity on the cellulose surface. The surface color shade of the dyed cellulose can be affected by sol–gel. The K/ S of two sample surfaces have noticeable increase. With increasing silica nanoparticles, the K/ S of samples have further improvement. The thin film imparts low reflectance index and increases color yield.
Author Hou, Aiqin
Yu, Yanhong
Chen, Huawei
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Issue 3
Keywords Sol–gel
Nanoparticle
Dispersion
Cellulose
Monoazo dye
Sol-gel
Color
Experimental study
Silica
Reflection spectrum
Sol gel process
Morphology
Reactive dye
Coated fabric
Manufacturing
Woven material
Cotton fiber
Coloration
Language English
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Snippet Cellulose fabric is dyed with Reactive Red B-3BF. Dispersion of silica nanoparticles on dyed cellulose surface is investigated. Novel color cellulose/silica...
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SubjectTerms Applied sciences
Cellulose
cellulosic fibers
color
Dispersion
dyeing
Exact sciences and technology
fabrics
Fibers and threads
Forms of application and semi-finished materials
Fourier transform infrared spectroscopy
gels
Nanoparticle
new methods
particles
Polymer industry, paints, wood
silica
Sol–gel
spatial distribution
spectral analysis
surface quality
Technology of polymers
Title Uniform dispersion of silica nanoparticles on dyed cellulose surface by sol–gel method
URI https://dx.doi.org/10.1016/j.carbpol.2009.09.004
https://www.proquest.com/docview/46557769
Volume 79
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