Perfluorinated resin with high exchange capacity as well as preparation method and application thereof
An exchange capacity, perfluororesin technology, applied in chemical instruments and methods, final product manufacturing, sustainable manufacturing/processing, etc., can solve problems such as inability to meet high-temperature use requirements, and achieve good high-temperature mechanical stability and high current efficiency. , the effect of high chemical stability
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Embodiment 1
[0079] Clean the reactor and add 5.0L deionized water, 100g sodium dodecylbenzenesulfonate and 125g nonylphenol polyoxyethylene ether NP-10 emulsifier, start the stirring device, vacuumize and fill with high-purity nitrogen for three times, After testing that the oxygen content in the reaction kettle is below 1ppm, vacuumize, and add 500g of sulfonyl fluoride pendant vinyl ether monomer (1) (F 2 C=CF-O-CF 2 -CF 2 -SO 2 F) and 650g sulfonyl fluoride pendant vinyl ether monomer (2) (F 2 C=CF-O-CF 2 -CF 2 -CF 2 CF 2 -SO 2 F) and 405g cyano pendant vinyl ether monomer (F 2 C=CF-O-CF 2 CF 2 -CN), fill the reaction kettle with tetrafluoroethylene monomer to a pressure of 2.9MPa, raise the temperature to 20°C, and add 2.6g perfluorobutyryl compound (CF 3 CF 2 CF 2 CO-OO-CCF 2 CF 2 CF 3 ) initiates the polymerization reaction, and continuously feeds tetrafluoroethylene (CF 2 = CF 2 ) The monomer keeps the reaction pressure at 2.9 MPa, and adds 0.75 g of initiator to ...
Embodiment 2
[0082] Clean the reactor and add 5.0L of deionized water and 220g of sodium dodecylbenzenesulfonate, start the stirring device, vacuumize and replace with high-purity nitrogen three times, after testing that the oxygen content in the reactor is below 1ppm, vacuumize , add 500g sulfonyl fluoride pendant vinyl ether monomer (1) (F 2C=CF-O-CF 2 -CF 2 -SO 2 F) and 405g sulfonyl fluoride pendant vinyl ether monomer (2) (F 2 C=CF-O-CF 2 CF 2 CF 2 CF 2 -SO 2 F) and 225g cyano pendant vinyl ether monomer (F 2 C=CF-O-CF 2 CF 2 CF 2 CN), fill the reaction kettle with tetrafluoroethylene monomer to a pressure of 2.9MPa, heat up to 35°C, and add 8.0g of perfluoropropoxypropyl peroxide (CF 3 CF 2 CF 2 OCF (CF 3 )CO-OO-CCF(CF 3 )OCF 2 CF 2 CF 3 ) initiates the polymerization reaction, and continuously feeds tetrafluoroethylene (CF 2 = CF 2 ) monomer to keep the reaction pressure at 2.9MPa, add 2.3g of initiator to the system every 25min, stop adding the initiator after ...
Embodiment 3
[0085] Wash the reactor and add 5.0L deionized water, 120g sodium dodecylbenzenesulfonate and 95g nonylphenol polyoxyethylene ether NP-10 emulsifier, start the stirring device, vacuumize and fill with high-purity nitrogen for three times, After testing that the oxygen content in the reaction kettle is below 1ppm, vacuumize, and add 300g of sulfonyl fluoride pendant vinyl ether monomer (1) (F 2 C=CF-O-CF 2 -CF 2 -SO 2 F) and 610g sulfonyl fluoride pendant vinyl ether monomer (2) (F 2 C=CF-O-CF 2 -CF 2 CF 2 CF 2 -SO 2 F) and 250g cyano pendant vinyl ether monomer (F 2 C=CF-O-CF 2 CF 2 CF 2 CF 2 After CN), fill tetrafluoroethylene monomer to pressure in the reaction kettle to be 3.2MPa, be warming up to 80 ℃, add 10% ammonium persulfate aqueous solution 320g to initiate polymerization reaction with metering pump, continue feeding tetrafluoroethylene (CF 2 = CF 2 ) monomer to keep the reaction pressure at 3.2MPa, after reacting for 3h, stop adding tetrafluoroethylene...
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