Detailed characterizations of proton permeability properties through commercial Nafion® films under various acidic electrolytes

  • Ngo, Hoang Thai Bao
  • Jo, Yu Jin
  • Kim, Wooyul
  • An, Hyosung
  • Park, Ho Bum
  • 외 1명
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초록

Nafion® film has been widely used as a representative cationic ion exchange membrane for electrochemical systems including water splitting. However, detailed H+ permeability properties have been poorly understood thus far. We here attempt to relate the H+ permeability with the material properties of Nafion® films. For that, four samples representing two casting types were selected to study the H+ permeability. We conducted the pretreatment to see the effect of the new alignment of the water clusters on the H+ permeability. Although the studied membranes show individual transport features, we observed the increased H+ permeability from 0.05 to 0.5 M concentrations in acidic electrolytes. Such a feature is caused by the increased chemical-potential gradient along with the osmotic de-swelling. We also found that a H+ diffusion channel is associated with the ionic cluster size of the films, which can explain the higher H+ permeability after the pretreatment. Lastly, the individual H+ permeability was obtained when measuring at different electrolytes, revealing that the H+ permeability is strongly influenced by the anionic mobility rather than the acidic dissociation constants. Our results provide a fundamental understanding of the H+ transports through the commercial Nafion® membrane, which gives a guideline for the rational design of ion exchange membranes.

키워드

CommercialNafion (R) proton exchangemembraneCasting methodProton permeabilityAcidic electrolyteAnionic mobilityHYDRATED POLYMER MEMBRANESWATERDIFFUSIONMICROSTRUCTUREPERFORMANCETRANSPORTSTATECONDUCTIVITYPRETREATMENTMICROSCOPY
제목
Detailed characterizations of proton permeability properties through commercial Nafion® films under various acidic electrolytes
저자
Ngo, Hoang Thai BaoJo, Yu JinKim, WooyulAn, HyosungPark, Ho BumKim, Hyo Won
DOI
10.1016/j.polymer.2024.127180
발행일
2024-06
유형
Article
저널명
Polymer
305
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