Preparation and evaluation of a proton exchange membrane based on oxidation and water stable sulfonated polyimides
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2007
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Resumo |
A series of novel oxidation and water stable sulfonated polyimides (SPIs) were synthesized from 4,4'-binaphthyl-1,1',8,8'-tetracarboxylic dianhydride (BTDA), and wholly aromatic diamine 2,2'-bis(3-sulfobenzoyl) benzidine (2,2'-BSBB) for proton exchange membrane fuel cells. These polyimides could be cast into flexible and tough membranes from m-cresol solutions. The copolymer membranes exhibited excellent oxidative stability and mechanical properties due to their fully aromatic structure extending through the backbone and pendant groups. Moreover, all BTDA-based SPI membranes exhibited much better water stability than those based on the conventional 1,4,5,8-naphthalenecarboxylic dianhydride. The improved water stability of BTDA-based polyimides was attributed to its unique binaphthalimide structure. The SPI membranes with ion exchange capacity (IEC) of 1.36-1.90 mequiv g(-1) had proton conductivity in the range of 0.41 x 10(-1) to 1. 12 x 10(-1) S cm(-1) at 20 degrees C. The membrane with IEC value of 1.90 mequiv g(-1) displayed reasonably higher proton conductivity than Nafion((R)) 117 (0.9 x 10(-1) S cm(-1)) under the same test condition and the high conductivity of 0.184 S cm(-1) was obtained at 80 degrees C. Microscopic analyses revealed that well-dispersed hydrophilic domains contribute to better proton conducting properties. These results showed that the synthesized materials might have the potential to be applied as the proton exchange membranes for PEMFCs. |
Identificador | |
Idioma(s) |
英语 |
Fonte |
Li NW;Cui ZM;Zhang SB;Li SH;Zhang F.Preparation and evaluation of a proton exchange membrane based on oxidation and water stable sulfonated polyimides,JOURNAL OF POWER SOURCES,2007 ,172(2):511-519 |
Palavras-Chave | #FUEL-CELL APPLICATIONS #SULFOBENZOYL SIDE-GROUPS #CONDUCTIVITY #ACID #POLYELECTROLYTES #COPOLYMERIZATION #DIANHYDRIDE #STABILITY #POLYMERS |
Tipo |
期刊论文 |