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A durable antibacterial and superhydrophobic viscose textile has been developed via in situ growing silver nanoparticles (NPs) on tannic acid (TA)-coated viscose textiles and further hydrophobic treatment under mild reaction condition. The surface morphology and chemical composition of the modified textile have been characterized by scanning electron microscopy, energy dispersive X-ray spectroscopy,...
Ultraviolet (UV) shielding, superhydrophobic and antimicrobial cotton fabrics were fabricated using functional coatings combined with advantages of polyvinylsilsesquioxane and ZnO nanoparticles by solution immersion. The influence of composite coatings on surface morphology, water-repellence, UV shielding property, mechanical property, thermal degradation behavior and antibacterial property of the...
UV-blocking, superhydrophobic and robust cotton fabrics were successfully developed by combination of polyvinylsilsesquioxane (PVS) and nano-TiO2 for the first time. The influence of the add-on amount on morphologies, ultraviolet (UV) protection, hydrophobicity, mechanical properties, rigidity and thermal degradation of the treated cotton fabrics was studied. The nano-TiO2 particles were found to...
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