DocumentCode :
149366
Title :
Synthesis and properties of sulfonated poly(N-methylisatin-biphenylene) proton exchange membrane by superacid-catalyzed polymerization
Author :
Soonho Lee ; Youngdon Lim ; Hossain, Md Aynal ; Hohyoun Jang ; Youngtae Jeon ; Sangyoung Lee ; Lei Jin ; Whangi Kim
Author_Institution :
Dept. of Appl. Chem., Konkuk Univ., Chungju, South Korea
fYear :
2014
fDate :
25-27 March 2014
Firstpage :
1
Lastpage :
4
Abstract :
A series of poly(phenylene)-based polyelectrolytes were synthesized from trifluoroacetophenone and N-methylisatin by superacid catalyzed polyhydroxyalkylation reaction. Postsulfonation of this high molecular weight and thermochemically stable poly(phenylene) with concentrated sulfuric acid resulted in homogeneous polyelectrolytes with controllable ion content (IEC: 1.40-2.39 meq./g). All these membranes were casted from dimethylsulfoxide (DMSO). The structural properties of the synthesized polymers were investigated by 1H NMR spectroscopy. The membranes were studied by ion exchange capacity (IEC), water uptake, dimensional stability and proton conductivity assessment by comparing with Nation. The polymers containing fluoro group without ether linkage on polymer backbone were chemically stable towards nucleophiles (H2O, hydrogen peroxide, hydroxide anion and radical).
Keywords :
NMR spectroscopy; catalysis; ion exchange; polymer electrolytes; polymerisation; proton exchange membrane fuel cells; DMSO; H NMR spectroscopy; IEC; PEMFC; concentrated sulfuric acid; dimensional stability; dimethylsulfoxide; ion exchange capacity; poly(phenylene)-based polyelectrolytes; polymer electrolyte membrane fuel cell; proton conductivity assessment; sulfonated poly(N-methylisatin-biphenylene); superacid catalyzed polyhydroxyalkylation reaction; superacid-catalyzed polymerization; synthesized polymers; trifluoroacetophenone; water uptake; Chemicals; Conductivity; Fuel cells; Plastics; Protons; Stability analysis; Thermal stability; Fuel cell; PEMFC; electrolyte; membrane; superacid;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Renewable Energy Congress (IREC), 2014 5th International
Conference_Location :
Hammamet
Print_ISBN :
978-1-4799-2196-6
Type :
conf
DOI :
10.1109/IREC.2014.6827026
Filename :
6827026
Link To Document :
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