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In direct methanol fuel cells, methanol crossover is a major issue which has minimized the efficiency of polymer electrolyte membrane for energy generation. PANI‐GO was manufactured by in situ polymerization method and the formation of PANI coated GO nanostructures was validated by surface morphology and crystallinity analysis. The membrane layer morphology and topography evaluation verified that GO and PANI‐GO were well dispersed externally of SPEEK membrane. PANI‐GO changed SPEEK membrane layer boosted the proton conductivity, which resulted from the presence of hydrophilic and acidic team present in PANI and GO.
Source link: https://onlinelibrary.wiley.com/doi/10.1002/pat.5491
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