Anion-exchange membranes for alkaline polymer electrolyte fuel cells: comparison of pendent benzyltrimethylammonium- and benzylmethylimidazolium-head-groups

Анионообменные мембраны для щелочных полимер-электролитных топливных элементов: сравнение боковых бензилтриметиламмониевых и бензилметилимидазолиевых головных групп
Oliver Deavin, Sam Murphy, Ai Lien Ong, Simon D. Poynton, Rong Zeng, H. Herman, John R. Varcoe
2012-01-01

FT-Raman spectroscopyalkaline polymer electrolyte fuel cellsanion-exchange membranesbenzylmethylimidazoliumbenzyltrimethylammonium
Radiation-grafted alkaline anion-exchange membranes (AAEM) containing pendent groups with either benzyltrimethylammonium (BTM) or benzylmethylimidazolium (BMI) functionality were successfully synthesised from the same base membrane and with identical ion-exchange capacities. The conductivity of the new BMI-AAEM is comparable to the BTM-benchmark AAEM. The fuel cell performance obtained with the BMI-AAEM was, however, significantly poorer due to in situ AAEM degradation. FT-Raman spectroscopic studies on the stability of the two head-groups at 60 °C in aqueous potassium hydroxide (1 mol dm−3) indicates that the BMI-group is intrinsically less chemically stable in strongly alkaline conditions compared to the BTM-benchmark head-group. However, the stabilities of both head-groups are improved when treated at 60 °C in lower pH aqueous carbonate and bicarbonate solutions (1 mol dm−3). Contrary to a portion of the prior literature, there appears to be no real advantage in using anion-exchange polymer electrolytes containing pendent imidazolium groups in highly alkaline systems.
1
Both head-groups showed improved stability in 1 mol dm−3 aqueous carbonate and bicarbonate solutions at 60 °C.
2
FT-Raman studies showed that BMI head-groups are intrinsically less chemically stable than BTM groups in 1 mol dm−3 aqueous KOH at 60 °C.
3
Pendent imidazolium groups provide no apparent advantage over benzyltrimethylammonium groups in highly alkaline polymer electrolyte systems.
4
Radiation-grafted alkaline anion-exchange membranes with pendent BMI and BTM groups were synthesized from the same base membrane at identical ion-exchange capacities.
5
The BMI membrane exhibited conductivity comparable to the BTM benchmark, but its fuel-cell performance was significantly poorer because of in situ membrane degradation.

Radiation-grafted alkaline anion-exchange membranes containing pendent benzyltrimethylammonium or benzylmethylimidazolium head-groups for alkaline polymer electrolyte fuel cells

Comparison of the membranes’ ionic conductivity, fuel-cell performance, and chemical stability of the two head-groups under strongly alkaline and carbonate/bicarbonate conditions

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2012-01-01
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Oliver Deavin
Sam Murphy
Ai Lien Ong
Simon D. Poynton
Rong Zeng
H. Herman
John R. Varcoe
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