Aqueous system conductive polyaniline ultraviolet curing antistatic coating and preparation method thereof
A conductive polyaniline and water-based system technology, applied in conductive coatings, polyurea/polyurethane coatings, coatings, etc., can solve the problems of high efficiency and energy saving, and achieve long-lasting antistatic effects and stable coating systems
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preparation Embodiment 1
[0027] Preparation Example 1: Preparation of Waterborne Conductive Polyaniline
[0028] According to the proportion by weight, 220 parts of ethylene glycol monomethyl ether phosphate was added to 100 parts of intrinsic polyaniline, 3540 parts of water were added, and stirred at 2200 rpm at 90 ° C for 24 hours to obtain a solid content of 5.7%. The aqueous dispersion of water-based conductive polyaniline has a particle size of 30-65nm, a molecular weight of 32000-45000 Daltons, and an electrical conductivity of 30S / cm.
preparation Embodiment 2
[0029] Preparation Example 2: Preparation of Waterborne Conductive Polyaniline
[0030] According to the ratio by weight, 180 parts of diethylene glycol monomethyl ether phosphate was added to 120 parts of intrinsic polyaniline, 5470 parts of water were added, and stirred at 80 ° C for 32 hours at a speed of 2000 rpm to obtain a solid content of 5.4 % The aqueous dispersion of water-based conductive polyaniline has a particle size of 36-70 nm, a molecular weight of 38,000-47,000 Daltons, and an electrical conductivity of 12 S / cm.
preparation Embodiment 3
[0031] Preparation Example 3: Preparation of Cationic Waterborne UV Curable Resin
[0032] Under the protection of dry nitrogen, 3mol toluene-2,4-diisocyanate, 1.5mol vacuum dehydrated polypropylene glycol (molecular weight is 1000 Daltons) and 0.24g dibutyltin dilaurate catalyst are added to a thermometer equipped with a stirring Keep the temperature at 40°C and the mechanical stirring speed at 400rpm, and react for 2.5 hours in a four-necked flask with a device and a dropping funnel; then, control the temperature at 25°C, add 150g of butanone, and add 0.5 mol of N-methyldiethanolamine, the mechanical stirring speed was 500rpm, and reacted for 1.5 hours. Then, the reaction temperature was controlled at 70°C, and 2.2 mol of hydroxyethyl acrylate dissolved with 1.3 g of p-hydroxyanisole was added dropwise to the reaction system at a rate of 15 ± 3 ml / min and a mechanical stirring speed of 600 rpm. Reaction 2 Hour, when NCO%=0.09%, at 45 ℃, add the water with 2900g, mechanical ...
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