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Stability of ionic-covalently cross-linked PBI-blended membranes for SO2 electrolysis at elevated temperatures

, , , , and . International Journal of Hydrogen Energy, 45 (4): 2447-2459 (2020)
DOI: 10.1016/j.ijhydene.2019.11.132

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Sulfonated poly(arylene thioether phosphine oxide)s and poly(arylene ether phosphine oxide)s PBI-blend membranes and their performance in SO2 electrolysis, , , , , and . International journal of hydrogen energy, 41 (8): 4521-4537 (2016)Comparison of ionically and ionical-covalently cross-linked polyaromatic membranes for SO2 electrolysis, , , , , and . International Journal of Hydrogen Energy, 39 (1): 28--40 (January 2014)Evaluation of covalently and ionically cross-linked PBI-excess blends for application in SO2 electrolysis, , , and . International Journal of Hydrogen Energy, 40 (29): 8788-8796 (2015)Characterisation of a polyaromatic PBI blend membrane for SO2 electrolysis, , , , and . International journal of hydrogen energy, 40 (8): 3122-3133 (2015)Stability of ionic-covalently cross-linked PBI-blended membranes for SO2 electrolysis at elevated temperatures, , , , and . International Journal of Hydrogen Energy, 45 (4): 2447-2459 (2020)Novel cross-linked partially fluorinated and non-fluorinated polyaromatic PBI-containing blend~membranes for SO 2 electrolysis, , , , , and . International Journal of Hydrogen Energy, 41 (28): 11868--11883 (July 2016)Novel cross-linked PBI-blended membranes evaluated for high temperature fuel cell application and SO2 electrolysis, , , , and . 1st Africa Energy Materials Conference, 5, 4, 2, page 10524-10532. Amsterdam, Elsevier, (2018)Novel cross-linked partially fluorinated and non-fluorinated polyaromatic PBI-containing blend membranes for SO2 electrolysis, , , , , and . International journal of hydrogen energy, 41 (28): 11868-11883 (2016)