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Densely sulfonated block copolymer composite membranes containing phosphotungstic acid for fuel cellmembranes

  • Kyu Ha Lee
  • , Ji Young Chu
  • , Ae Rhan Kim
  • , Kee Suk Nahm
  • , Cheol Ju Kim
  • , Dong Jin Yoo*
  • *Corresponding author for this work
  • Jeonbuk National University

Research output: Contribution to journalJournal articlepeer-review

Abstract

The synthesis and properties of densely sulfonated poly(arylene biphenylsulfone ketone) block copolymer and its composite membranes including phosphotungstic acid (PWA) were investigated. The chemical structure of the block copolymers was characterized by FT-IR, 1H-NMR, and GPC. The block copolymer composite membranes were prepared by mixing the block copolymer with a commercial PWA. The composite membranes have shown not only good thermal stability (decomposition temperature in nitrogen >250°C), but also lower water uptake than the unfilled membranes. Their crystalline phases and morphologies have been confirmed by X-ray diffraction (XRD) and field-emission scanning electron microscopy (FSEM), respectively. The composite membranes displayed relevant ion exchange capacity (IEC), as well as good proton conductivity especially at elevated temperature. The proton conductivity of the Block-19/PWA-30 composite membrane (IEC 1.58meqg-1) reached the maximum of 97mScm-1 at 90°C under 100% relative humidity (RH), which is comparable to Nafion-117. The fabricated composite membrane exhibited a maximum fuel cell power density of 150mWcm-2, which was much higher that of Block-19 membrane and can be considered as a candidate for potential application in fuelcells.

Original languageEnglish
Pages (from-to)35-43
Number of pages9
JournalJournal of Membrane Science
Volume434
DOIs
StatePublished - 2013.05.1

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 7 - Affordable and Clean Energy
    SDG 7 Affordable and Clean Energy

Keywords

  • Heteropoly acid
  • Ion conductivity
  • MEA performance
  • Organic-inorganic membrane
  • Thermal stability

Quacquarelli Symonds(QS) Subject Topics

  • Materials Science
  • Engineering - Petroleum
  • Engineering - Chemical
  • Chemistry
  • Biological Sciences

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