Broad-spectrum antibacterial and antiviral textile based on graft copolymerization of double-long-chain ionic liquid structural monomer and preparation method of broad-spectrum antibacterial and antiviral textile
An ionic liquid and textile technology, applied in the field of textiles, can solve the problems of unsustainable antibacterial and antiviral functions, narrow antibacterial and antiviral range, weak binding fastness between antibacterial and antiviral functional groups/particles and textiles, etc. The effect of large-scale production, strong bond fastness and low cost
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Embodiment 1
[0023] Example 1 Preparation of methacryloyloxyethyldidecylmethylammonium chloride grafted with cotton cloth irradiation solution
[0024] corresponds to the general structural formula The structural formula of the methacryloyloxyethyl didecyl methyl ammonium chloride of the present embodiment is:
[0025] An aqueous solution of methacryloyloxyethyldidecylmethylammonium chloride with a mass percentage concentration of 40% was prepared. The pure cotton cloth is cut into a suitable size, and the above-mentioned aqueous solution of methacryloyloxyethyl didecylmethyl ammonium chloride is evenly rolled on the surface of the cotton cloth by padding, and then the cotton cloth is placed in an irradiation tube, and the Deoxygenate with nitrogen for 20 minutes, seal, and irradiate 50 kGy with cobalt 60 source gamma rays at room temperature. The irradiated cotton cloth was extracted with water as solvent for 48 hours in a Soxhlet extractor to remove unreacted monomers and homopolyme...
Embodiment 2
[0031] Example 2 Preparation of chemically initiated emulsion binary co-grafting 1-perfluorohexyl-2-dodecyl-3-vinylimidazole tetrafluoroborate and hydroxyethyl acrylate for real silk fabrics
[0032] In order to enhance the hydrophilicity and softness of graft-modified antibacterial and antiviral textiles, the hydrophilic monomer hydroxyethyl acrylate and the antibacterial and antiviral functional monomer 1-perfluorohexyl-2-dodecyl-3- Binary co-grafting with vinylimidazole tetrafluoroborate. Using toluene as the dispersed phase and sorbitan stearic fatty acid ester as the emulsifier, it is prepared into hydroxyethyl acrylate and 1-perfluorohexyl-2-dodecyl-3-vinylimidazole under high shear stirring Water-in-oil emulsion of tetrafluoroborate (the mass ratio of the two is 1:3) in toluene. Immerse a 5×5cm silk cloth in the emulsion, add potassium persulfate as an initiator, pass nitrogen and deoxygenate for 20 minutes, seal the container, heat to 60°C to initiate the graft polyme...
Embodiment 3
[0037] Example 3 Preparation of 1-hexyl-2-octyl-3-vinyl pyridine chloride by UV light-initiated solution grafting of polyester fabric
[0038] Cut the polyester fabric to an appropriate size, soak it in the acetone solution of benzophenone for 20 minutes, then take out the polyester fabric, and volatilize the acetone in a ventilated place, so that the benzophenone is evenly dispersed on the surface of the polyester fabric. Subsequently, a 10% aqueous solution of 1-hexyl-2-octyl-3-vinylpyridine chloride was sprayed on the surface of the polyester fabric. The polyester fabric was transferred to a sealable quartz container, deoxygenated with nitrogen for 20 minutes, sealed, and irradiated under an ultraviolet lamp with a wavelength of 256 nm to initiate the graft polymerization reaction, and the reaction was terminated after 30 minutes with oxygen.
[0039] The graft ratio of 1-hexyl-2-octyl-3-vinylpyridine chloride salt measured by weighing method was 6.9%.
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