Nano xylan-based graft copolymer and preparation method and application thereof
A technology of graft copolymer and xylan, which is applied in the field of nano-xylan-based graft copolymer and its preparation, can solve the problem that the production conditions of new biomass wood preservatives cannot be reached, and the anti-corrosion of wood materials has not been widely used. It does not have bactericidal properties and anti-corrosion properties and other problems, and achieves significant social and economic benefits, strong bactericidal properties and anti-corrosion properties, and enhances the effect of bacteriostatic properties.
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[0029] The invention provides a kind of preparation method of nano-xylan-based graft copolymer, comprising the following steps:
[0030] Mixing xylan and lye, mixing the resulting mixture with ethanol, and obtaining nano-xylan after precipitation;
[0031] Mixing the nano-xylan and the first part of the first initiator to perform a first esterification reaction to obtain an intermediate;
[0032] Mixing the intermediate with a dispersant and a catalyst, adding a second part of the first initiator to the resulting mixed material, and performing a second esterification reaction to obtain nano-xylan-based ATRP initiator molecules;
[0033] The nanometer xylan-based ATRP initiator molecule, the second initiator, a ligand, a quaternary ammonium salt monomer, an organic solvent and a metal catalyst are mixed for a grafting reaction to obtain a nanometer xylan-based graft copolymer.
[0034] In the present invention, unless otherwise specified, the required preparation materials are...
Embodiment 1
[0060] Prepare nano-xylan-based graft copolymers according to the following synthesis process:
[0061]
[0062] Add 1 g of xylan to 100 mL of NaOH solution with a mass concentration of 5%, dissolve it at 50°C, adjust the pH value to 5 with dilute sulfuric acid with a mass concentration of 15%, add three times the volume of absolute ethanol to precipitate, and filter with suction Carry out freeze-drying afterward, obtain nano-xylan, the particle diameter of the prepared nano-xylan is 77.35nm;
[0063] Put 1g of nano-xylan into a 50mm petri dish, then put the petri dish into a chromatographic cylinder containing 2mL of 2-bromoisobutyryl bromide, place it in the dark at 20°C for 16h, and perform the first esterification reaction After the reaction, the obtained reaction mixture was washed successively with distilled water, ethanol, dichloromethane and n-hexane respectively, and dried in a vacuum oven at 30°C to constant weight to obtain an intermediate;
[0064] Disperse 1.0...
Embodiment 2
[0067]
[0068] Add 1 g of xylan to 100 mL of 10% NaOH solution, dissolve it at 60 ° C, adjust the pH value to 5.5 with dilute sulfuric acid with a mass concentration of 10 %, add four times the volume of absolute ethanol to precipitate, and freeze-dry after suction filtration to obtain Nano xylan, the particle size of the prepared nano xylan is 45.99nm;
[0069] Put 1.5g nano-xylan into a 50mm petri dish, then put the petri dish into a chromatography tank containing 3mL 2-bromo-2-methylpropionyl bromide, and place it in the dark at 30°C for 20h. Carrying out the first esterification reaction, washing the obtained reaction mixture with distilled water, ethanol, dichloromethane and n-hexane respectively after the reaction, and drying in a vacuum oven at 40°C to constant weight to obtain the intermediate;
[0070] Disperse 1.0 g of the intermediate in 100 mL of DMF, ultrasonically disperse for 10 min, add DMAP (3 g), then cool to 0 ° C in an ice-water bath, and then add 2-bro...
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