Synthesis and Characterization of H3PO4 Doped Poly(benzimidazole-co-benzoxazole) Membranes for High Temperature Polymer Electrolyte Fuel Cells
- Authors
- Lee, Hye-Jin; Lee, Dong Hoon; Henkensmeier, Dirk; Jang, Jong Hyun; Cho, Eun Ae; Kim, Hyoung-Juhn; Kim, Hwayong
- Issue Date
- 2012-10-20
- Publisher
- KOREAN CHEMICAL SOC
- Citation
- BULLETIN OF THE KOREAN CHEMICAL SOCIETY, v.33, no.10, pp.3279 - 3284
- Abstract
- Poly(benzimidazole-co-benzoxazole)s (PBI-co-PBO) are synthesized by polycondensation reaction with 3,3'-diaminobenzidine, terephthalic acid and 3,3'-dihydroxybenzidine or 4,6-diaminoresorcinol in polyphosphoric acid (PPA). All polymer membranes are prepared by the direct casting method (in-situ fabrication). The introduction of benzoxazole units (BO units) into a polymer backbone lowers the basic property and H3PO4 doping level of the copolymer membranes, resulting in the improvement of mechanical strength. The proton conductivity of H3PO4 doped PBI-co-PBO membranes decrease as a result of adding amounts of BO units. The maximum tensile strength reaches 4.1 MPa with a 10% molar ratio of BO units in the copolymer. As a result, the H3PO4 doped PBI-co-PBO membranes could be utilized as alternative proton exchange membranes in high temperature polymer electrolyte fuel cells.
- Keywords
- COMPOSITE MEMBRANES; PHOSPHORIC-ACID; CATALYST LAYER; POLYBENZIMIDAZOLE; CONDUCTIVITY; OPERATION; LIQUID; PEMFCS; WATER; COMPOSITE MEMBRANES; PHOSPHORIC-ACID; CATALYST LAYER; POLYBENZIMIDAZOLE; CONDUCTIVITY; OPERATION; LIQUID; PEMFCS; WATER; High-temperature polymer electrolyte fuel cell; Membrane electrode assembly; Polybenzimidazole; Poly(benzimidazole-co-benzoxazole)
- ISSN
- 0253-2964
- URI
- https://pubs.kist.re.kr/handle/201004/128759
- DOI
- 10.5012/bkcs.2012.33.10.3279
- Appears in Collections:
- KIST Article > 2012
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