4.8 Article

Crosslinked polybenzimidazoles containing branching structure as membrane materials with excellent cell performance and durability for fuel cell applications

Journal

JOURNAL OF POWER SOURCES
Volume 389, Issue -, Pages 222-229

Publisher

ELSEVIER SCIENCE BV
DOI: 10.1016/j.jpowsour.2018.04.025

Keywords

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Funding

  1. National Basic Research Program of China [2014CB643600]
  2. Natural Science Foundation of Guangdong Province [2015A030313546]
  3. Shenzhen Sci & Tech research grant [JCYJ201303291 05010137, JCYJ 20150331142303052, ZDSYS201507141105130]
  4. Nanshan District special funds [FG2013JNYF0015A]

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Crosslinking is an effective method to improve the properties of high temperature proton exchange membranes based on polybenzimidazole. However, the compact structure of crosslinked polybenzimidazole hinders the phosphoric acid absorption of the membranes, resulting in a relatively poor fuel cell performance. Recently, we find that branched polymers can absorb more phosphoric acid with a larger free volume, but suffer from deteriorated mechanical strength. In this work, a new method is proposed to obtain excellent over-all properties of high temperature proton exchange membranes. A series of crosslinked polybenzimidazoles containing branching structure as membrane materials are successfully prepared for the first time. Compared with conventional crosslinked membranes, these crosslinked polybenzimidazole membranes containing branching structure exhibit a higher phosphoric acid doping level and proton conductivity, improved durability, lower swelling rate and comparable mechanical strength. In particular, the fuel cell base on the crosslinked and branched membrane with a 10% ratio of crosslinker in non -humidified hydrogen/air at 160 degrees C achieves a power density of 404 mW cm(-2). The results indicate that the combination of crosslinking and branching is an effective approach to improve the properties of polybenzimidazole membrane materials.

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