研究目的
Investigating the multifunctional properties of cotton fabrics finished by PANI/TiO2, including conductivity, anti-ultraviolet, and photocatalysis activity.
研究成果
PANI/TiO2/cotton fabric exhibits good conductivity, UV protection, and photocatalytic performance, making it a promising material for household goods and industrial wastewater treatment.
研究不足
The conductivity of the composite fabric decreased with the increase of TiO2 concentration. The photocatalytic efficiency might be limited by the relatively low content of TiO2.
1:Experimental Design and Method Selection:
In-situ polymerization of PANI/TiO2 on cotton fabrics using SSA and SDBS as dopants.
2:Sample Selection and Data Sources:
Pure white cotton plain woven fabrics were used.
3:List of Experimental Equipment and Materials:
FTIR, XPS, XRD, FESEM, TGA, and four-probe method for conductivity measurement.
4:Experimental Procedures and Operational Workflow:
Plasma pretreatment of cotton fabrics, preparation of PANI/TiO2/cotton fabrics, and characterization of their properties.
5:Data Analysis Methods:
Analysis of FTIR, XPS, XRD spectra, and measurement of conductivity, UV protection, and photocatalytic activity.
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Fourier Transform Infrared spectrum analyzer
Nicolet IS10
Acquiring FTIR spectra
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X-ray photoelectron spectroscopy analyzer
PHI 5000C ESCA System
XPS analysis
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X-ray diffractometer
PANalytical XPert Powder diffractometer
XRD analysis
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Thermogravimetric analyzer
TG F1 NETZSCH
Netzsch
TGA and DTG analysis
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Field emission scanning electron microscopy
Nova NanoSEM 450
Characterization of surface morphologies
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Four-Point Probes
SZT-2A
Suzhou Tongchuang
Measurement of electrical resistance
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High insulation resistance measuring instrument
ZC-90G
Shanghai Taiou
Measurement of electrical resistance
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Textile Ultraviolet Prevention Instrument
YG(B) 912E
Wenzhou Darong
Evaluation of UV resistance of textiles
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UV-3600 Plus UV–VIS-NIR spectrophotometer
UV-3600 Plus
Determination of absorbance
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