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首页> 外文期刊>Journal of Membrane Science >Methanol permeation and proton conductivity of acid-doped poly (N-ethylbenzimidazole) and poly(N-methylbenzimidazole)
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Methanol permeation and proton conductivity of acid-doped poly (N-ethylbenzimidazole) and poly(N-methylbenzimidazole)

机译:酸掺杂的聚(N-乙基苯并咪唑)和聚(N-甲基苯并咪唑)的甲醇渗透和质子传导性

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In the present work, poly(N-methylbenzimidazole) (PNMBI) and poly(N-ethylbenzimidazole) (PNEBI) were synthesized by methylation and ethylation of polybenzimidazole (PBI). Methanol permeability of PNMBI, PNEBI, and PBI was studied. Effects of methanol concentration and temperature on methanol permeability of PNMBI, PNEBI, and PBI membranes are discussed. The results show that PBI, PNMBI and PNEBI membranes are good methanol barrier. Methanol permeability in PBI, PNMBI and PNEBI membranes decrease with increasing methanol concentration. Temperature dependence of methanol permeability of PBI membrane can be fitted by Arrhenius equation. Proton conducting materials based on N-substituted PBI were prepared by successive immersion of the membranes in phosphoric acid solution. Interaction between PNMBI and phosphoric acid was studied by FTIR. It is indicated that the interaction in PNMBI/xH(3)PO(4) and PBI/XH3PO4 is mainly due to the protonation. Proton conductivity of phosphoric acid-doped PNMBI and PBI was investigated by impedance measurements. Proton conductivity of acid-doped PNMBI increases with the increasing doping level and temperature. Proton conductivity of phosphoric acid-doped PNMBI and PBI is governed by a hopping mechanism rather than a mechanism mediated by the segmental motions in the polymer. (C) 2004 Published by Elsevier B.V.
机译:在本工作中,通过聚苯并咪唑(PBI)的甲基化和乙基化反应合成了聚(N-甲基苯并咪唑)(PNMBI)和聚(N-乙基苯并咪唑)(PNEBI)。研究了PNMBI,PNEBI和PBI的甲醇渗透性。讨论了甲醇浓度和温度对PNMBI,PNEBI和PBI膜的甲醇渗透性的影响。结果表明,PBI,PNMBI和PNEBI膜是良好的甲醇阻隔层。 PBI,PNMBI和PNEBI膜的甲醇渗透率随甲醇浓度的增加而降低。 PBI膜的甲醇渗透性的温度依赖性可以通过Arrhenius方程拟合。通过将膜连续浸入磷酸溶液中来制备基于N-取代的PBI的质子传导材料。 FTIR研究了PNMBI与磷酸之间的相互作用。它表明在PNMBI / xH(3)PO(4)和PBI / XH3PO4中的相互作用主要是由于质子化。通过阻抗测量研究了掺磷酸的PNMBI和PBI的质子传导率。掺杂酸的PNMBI的质子电导率随掺杂水平和温度的升高而增加。掺杂磷酸的PNMBI和PBI的质子电导率由跳变机制控制,而不是由聚合物中的链段运动介导的机制控制。 (C)2004由Elsevier B.V.发布

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