Solution polymerization preparation method of perfluorinated sulfonic acid resin
A technology of perfluorosulfonic acid resin and solution, applied in the field of fuel cells, can solve the problems of difficulty in improving electrical conductivity and poor oxygen permeability of resins, and achieve improved processability, improved solubility, and high affinity. Effect
- Summary
- Abstract
- Description
- Claims
- Application Information
AI Technical Summary
Problems solved by technology
Method used
Image
Examples
Embodiment 1
[0037] After cleaning and drying the reactor, vacuumize and replace with nitrogen until the water content is below 100ppm and the oxygen content is below 10ppm. Vacuumize and fill the tetrafluoroethylene monomer to 0.1MPa, and then vacuumize to 0.0001MPa, then add 300mL1H-perfluorohexane, 45g monomer CF 2 = CFOCF 2 CF(CF 3 )OCF 2 CF 2 SO 2 F, 56gCF 2 = CFOCF 2 CF 2 SO 2 F and 17g of monomer C were added to the reaction kettle, the temperature was raised to 60°C, tetrafluoroethylene was introduced until the pressure reached 2MPa, and 10mL containing 0.02g of perfluorobutyryl peroxide (CF 3 CF 2 CF 2 CO-OO-CCF 2 CF 2 CF 3 ) initiator solution, maintain the reaction pressure at about 2MPa, and continuously add 45g monomer CF 2 = CFOCF 2 CF(CF 3 )OCF 2 CF 2 SO 2F and 8.5g monomer C, when tetrafluoroethylene addition reaches 100g, stop adding, allow reaction to continue, when still internal pressure is reduced to 1MPa, stop reaction, reclaim unreacted tetrafluoro...
Embodiment 2
[0039] After cleaning and drying the reactor, vacuumize and replace with nitrogen until the water content is below 100ppm and the oxygen content is below 10ppm. Vacuumize and fill the tetrafluoroethylene monomer to 0.1MPa, and then vacuumize to 0.0001MPa, then add 300mL dichloropentafluoropropane, 27g monomer CF 2 = CFOCF 2 CF(CF 3 )OCF 2 CF 2 SO 2 Add F and 51g monomer C into the reaction kettle, control the temperature to 20°C, feed tetrafluoroethylene until the pressure reaches 1MPa, and add 10mL initiator solution containing 0.1g diisopropyl peroxydicarbonate (IPP) with a metering pump , maintain the reaction pressure at about 1MPa, and continuously add 90g of monomer CF 2 = CFOCF 2 CF(CF 3 )OCF 2 CF 2 SO 2 F and 0.5g monomer C, when the tetrafluoroethylene addition reaches 100g, stop adding, allow reaction to continue, when still internal pressure is reduced to 0.2MPa, stop reaction, reclaim unreacted tetrafluoroethylene monomer. Release the material and transf...
Embodiment 3
[0041] After cleaning and drying the reactor, vacuumize and replace with nitrogen until the water content is below 100ppm and the oxygen content is below 10ppm. Vacuumize and fill tetrafluoroethylene monomer to 0.1MPa, then vacuumize to 0.0001MPa, then add 300mL1,1,2,2-tetrafluoroethyl-2,2,2-trifluoroethyl ether, 180g monomer CF 2 = CFOCF 2 CF(CF 3 )OCF 2 CF 2 SO 2 F and 8.5g of monomer C were added to the reaction kettle, the temperature was raised to 120°C, tetrafluoroethylene was introduced until the pressure reached 5MPa, and the addition of tetrafluoroethylene was stopped, and 10mL containing 0.01g perfluorobutyryl peroxide (CF 3 CF 2 CF 2 CO-OO-CCF 2 CF 2 CF 3 ) and 0.01g methanol initiator and chain transfer agent solution, and continuously add 4.5g monomer CF 2 = CFOCF 2 CF(CF 3 )OCF 2 CF 2 SO 2 F and 21g of monomer C, when the pressure in the kettle was reduced to 1MPa, the reaction was stopped, and the unreacted tetrafluoroethylene monomer was recovere...
PUM
Abstract
Description
Claims
Application Information
- R&D Engineer
- R&D Manager
- IP Professional
- Industry Leading Data Capabilities
- Powerful AI technology
- Patent DNA Extraction
Browse by: Latest US Patents, China's latest patents, Technical Efficacy Thesaurus, Application Domain, Technology Topic, Popular Technical Reports.
© 2024 PatSnap. All rights reserved.Legal|Privacy policy|Modern Slavery Act Transparency Statement|Sitemap|About US| Contact US: help@patsnap.com