High-performance sultone-modified PVA/PAMPS semi-IPN hydrogels for proton exchange membranes
| Title | High-performance sultone-modified PVA/PAMPS semi-IPN hydrogels for proton exchange membranes |
| Publication Type | Journal Article |
| Year of Publication | 2026 |
| Authors | Patwadkar, MV, Illathvalappil, R, Torris, A, Francis, SC, Kurungot, S, Badiger, MV |
| Journal | Journal of Applied Polymer Science |
| Volume | 143 |
| Issue | 15 |
| Date Published | APR |
| Type of Article | Article |
| ISSN | 0021-8995 |
| Keywords | batteries and fuel cells, functionalization of polymers, Gels, membranes, polyelectrolytes |
| Abstract | Hydrogel membranes composed of poly(2-acrylamido-2-methyl-1-propanesulfonic acid) (PAMPS) and sultone-modified poly(vinyl alcohol) (PVA) were successfully synthesized and evaluated as promising proton-conducting materials. A key advantage involves the premodification of PVA with 1,3-propane sultone to introduce sulfonic acid groups, thereby imparting proton conductivity to the PVA backbone. This sultone-modified PVA was then physically entangled within a PAMPS cross-linked network to form novel semi-interpenetrating network (semi-IPN) hydrogels. This synergistic design leverages the excellent film-forming and mechanical properties of PVA with the high proton conductivity inherent to PAMPS. The synthesized membranes exhibited robust mechanical properties, with tensile strengths ranging from 5 to 30 MPa and percentage elongations between 200% and 400%, depending on their humidity content. These hydrogel membranes demonstrated proton conductivities ranging from 0.6 to 4.3 x 10-2 S cm-1. The activation energy for proton conduction was found to be as low as 3.5 kJ mol-1, significantly lower than that of the commercial benchmark membrane, Nafion 117 (12 kJ mol-1). These findings underscore the potential of these novel PAMPS/sultone-modified PVA semi-IPN hydrogel membranes for advanced fuel cell applications. |
| DOI | 10.1002/app.70462 |
| Type of Journal (Indian or Foreign) | Foreign |
| Impact Factor (IF) | 2.8 |

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