A kind of tetrafluoroethylene ternary perfluorinated resin and its application as ion membrane reinforcement material
A technology of tetrafluoroethylene and fluororesin, which is applied in the field of fluorine-containing polymers, can solve the problems of high polymer melt viscosity, difficult to achieve, and affecting polymer thermal stability.
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Embodiment 1
[0036] Add 23.2g of melamine derivatives with perfluoroalkyl ether chain segments and 185g of distilled water as dispersant / solvent in a 1L high-pressure stainless steel reaction kettle equipped with stirring, heating, and nitrogen feeding devices, and perfluoropropyl vinyl ether 3.02g and 0.2g of benzoyl peroxide, replace the air in the reactor with high-purity nitrogen, introduce 105g of tetrafluoroethylene, 8.76g of perfluoromethyl vinyl ether, heat up to 80°C and stir for 6 hours. After the reaction Cool and deflate to make the pressure inside the kettle become normal pressure, release the product from the discharge pipe, precipitate in a large amount of water, filter to obtain a powder product, wash with distilled water several times, and dry under vacuum at 100°C. Dispersant and water product, liquid separation and recycling.
[0037] The prepared polymer material is tested by Fourier transform infrared and shows that the weight percentage of tetrafluoroethylene is 96.54...
Embodiment 2
[0039]Add 23.2g of melamine derivatives with perfluoroalkyl ether chain segments and 185g of distilled water as dispersant / solvent in a 1L high-pressure stainless steel reaction kettle equipped with stirring, heating, and nitrogen feeding devices, and perfluoropropyl vinyl ether 8.06g and 0.2g of benzoyl peroxide, replace the air in the reactor with high-purity nitrogen, pass through 105g of tetrafluoroethylene, 8.76g of perfluoromethyl vinyl ether, heat up to 80°C and stir for 6h, cool down after the reaction , release gas, make the pressure in the kettle become normal pressure, release the product from the discharge pipe, precipitate in a large amount of water, filter to obtain a powder product, wash with distilled water several times, and dry under vacuum at 100°C. Dispersant and water product, liquid separation and recycling.
[0040] The prepared polymer material is tested by Fourier transform infrared and shows that the weight percentage of tetrafluoroethylene is 95.58% ...
Embodiment 3
[0042] Add 23.2g of melamine derivatives with perfluoroalkyl ether chain segments and 185g of distilled water as dispersant / solvent in a 1L high-pressure stainless steel reaction kettle equipped with stirring, heating, and nitrogen feeding devices, and perfluoropropyl vinyl ether 3.02g and 0.2g of benzoyl peroxide, replace the air in the reactor with high-purity nitrogen, pass through 105g of tetrafluoroethylene, 21.81g of perfluoromethyl vinyl ether, heat up to 80°C and stir for 6h, cool down after the reaction , release gas, make the pressure in the kettle become normal pressure, release the product from the discharge pipe, precipitate in a large amount of water, filter to obtain a powder product, wash with distilled water several times, and dry under vacuum at 100°C. Dispersant and water product, liquid separation and recycling.
[0043] The prepared polymer material is tested by Fourier transform infrared and shows that the weight percentage of tetrafluoroethylene is 93.19...
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Abstract
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