Preparation and properties of sulfonated polybenzimidazole-polyimide block copolymers as electrolyte membranes

被引:0
作者
Haiyan Pan
Shixiong Chen
Ming Jin
Zhihong Chang
Hongting Pu
机构
[1] Tongji University,Department of polymer materials, School of Materials Science & Engineering
来源
Ionics | 2018年 / 24卷
关键词
Sulfonated polybenzimidazole; Polyimide; Block copolymer; Proton exchange membrane; Fuel cell;
D O I
暂无
中图分类号
学科分类号
摘要
Sulfonated polybenzimidazole-polyimide block copolymers are synthesized through condensation polymerization at high temperature. The length of the polyimide chain is varied to give a series of block copolymers with various block lengths. The as-synthesized block polymers are used to prepare the corresponding membranes through the solvent evaporation method. The structure of the block copolymers is characterized by Fourier transform infrared spectroscopy (FTIR) and nuclear magnetic resonance spectroscopy (NMR). Their mechanical strength, thermal behavior, water uptake, swelling ratio, and proton conductivity, as well as oxidative stability are also investigated. All the block copolymers exhibit good thermal stability, dimensional stability, mechanical strength, and proton conductivity. Compared to the random sulfonated polyimide-containing benzimidazole membranes with the same degree of sulfonation, the membranes prepared from the block copolymers show higher proton conductivities. The proton conductivities of the block copolymer membranes range from 6.2 × 10−4 to 1.1 × 10−2 S cm−1 at 105 °C. The block copolymer membrane doped with phosphoric acid exhibits proton conductivity higher than 0.2 S cm−1 at 160 °C, indicating its potential applications in proton exchange membrane fuel cells operated under high temperature and low humidity conditions.
引用
收藏
页码:1629 / 1638
页数:9
相关论文
共 147 条
  • [21] Prater K(2001)Stability study of sulfonated phthalic and naphthalenic polyimide structures in aqueous medium Polymer 42 5097-5105
  • [22] Mistri EA(2014)Organic-inorganic hybrid proton exchange membrane based on polyhedral oligomeric silsesquioxanes and sulfonated polyimides containing benzimidazole J Power Sources 263 195-202
  • [23] Mohanty AK(2014)A gemini quaternary ammonium poly (ether ether ketone) anion-exchange membrane for alkaline fuel cell: design, synthesis, and properties ChemSusChem 7 3389-3395
  • [24] Banerjee S(2015)Reduction of methanol crossover and improved electrical efficiency in direct methanol fuel cell by the formation of a thin layer on Nafion 117 membrane: effect of dip-coating of a blend of sulphonated PVdF-co-HFP and PBI J Membr Sci 474 140-147
  • [25] Komber H(2004)State of understanding of nafion Chem Rev 104 4535-4585
  • [26] Voit B(2017)Preparation of covalently cross-linked sulfonated polybenzimidazole membranes for vanadium redox flow battery applications J Membr Sci 525 229-239
  • [27] Suzuki K(2015)Preparation and properties of the cross-linked sulfonated polyimide containing benzimidazole as electrolyte membranes in fuel cells J Membr Sci 476 87-94
  • [28] Iizuka Y(2012)New, organo-soluble, thermally stable aromatic polyimides and poly(amide-imide) based on 2- 5-(3,5-dinitrophenyl)-1,3, 4-oxadiazole-2-yl pyridine Polym Int 61 1213-1220
  • [29] Tanaka M(2015)Synthesis and properties of novel multiblock copolyimides consisting of benzimidazole-groups-containing sulfonated polyimide hydrophilic blocks and non-sulfonated polyimide hydrophobic blocks as proton exchange membranes Electrochim Acta 177 151-160
  • [30] Kawakami H(2015)Novel polyimides containing benzimidazole for temperature proton exchange membrane fuel J Membr Sci 483 144-154