Alkaline ion-solvating membranes derived from a tetrazole functionalized poly(arylene alkylene) are prepared, characterized and evaluated as electrode separators in alkaline water electrolysis. The base polymer, poly[[1,1'-biphenyl]-4,4'-diyl(1,1,1-trifluoropropan-2-yl)], is synthesized by superacid catalyzed polyhydroxyalkylation and subsequently functionalized with tetrazole pendants. After equilibration in aqueous KOH, the relatively acidic tetrazole pendants are deprotonated to form the corresponding potassium tetrazolides. The room temperature ion conductivity is found to peak at 19â mSâcm(-1) in 5â wt.â% KOH, and slightly declines with increasing KOH concentration to 13â mSâcm(-1) in 30â wt.â% KOH. Based on an overall assessment of the mechanical properties, conductivity and electrode activity, 30â wt.â% KOH is applied for alkaline electrolysis cell tests. Current densities of up to 1000â mAâcm(-2) were reached with uncatalyzed Ni-foam electrodes at a cell voltage of less than 2.6â V, with improved gas barrier characteristics compared to that of the several times thicker Zirfon separator.
Poly(Arylene Alkylene)s with Tetrazole Pendants for Alkaline Ion-Solvating Polymer Electrolytes.
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作者:Xia Yifan, Rajappan Sinu C, Chen Si, Kraglund Mikkel Rykær, Serhiichuk Dmytro, Pan Dong, Jensen Jens Oluf, Jannasch Patric, Aili David
| 期刊: | ChemSusChem | 影响因子: | 6.600 |
| 时间: | 2024 | 起止号: | 2024 Dec 6; 17(23):e202400844 |
| doi: | 10.1002/cssc.202400844 | ||
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