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Halide diffusion in polyaniline membranes

机译:卤化物在聚苯胺膜中的扩散

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The feasibility of application of polyaniline (PAni) as electrolyte in polymer-electrolyte-membrane fuel cells (PEMFC) was investigated. PAni was dissolved in N-methyl pyrrolidone (NMP), cast as emeraldine base membranes (EB) and then doped with halide acids. The proton conductivity was measured according to Hittorf. The chloride ion distribution within the membrane was evaluated using energy-dispersive-X-ray analysis (EDX) and the diffusion coefficient was calculated using EDX, impedance spectroscopy and photometric analysis. The specific resistance was determined using conventional four-point measurement. The proton conductivity of HCl_(conc).-doped PAni is approximately half that of the reference material Nafion~® 117. The diffusion coefficient for the chloride ion within the membrane was determined to be between 1.86 and 3.4 x 10~(-8) cm~2 s~(-1). Although halide-doped membranes were found to be proton conducting, slow halide removal during fuel cell operation occurred causing a rapid decline in cell performance. It is, therefore, concluded that in order to prepare suitable PAni membranes for fuel cell applications, it will be necessary to dope PAni with acids in such a way that loss of the dopant can not occur. Doping with solid acids or large molecular acids (in order to reduce their diffusivity) may be a solution to the problem.
机译:研究了聚苯胺(PAni)作为电解质在聚合物电解质膜燃料电池(PEMFC)中的可行性。将PAni溶解在N-甲基吡咯烷酮(NMP)中,铸成翡翠基膜(EB),然后掺杂卤化物酸。根据Hittorf测量质子电导率。使用能量色散X射线分析(EDX)评估膜中氯离子的分布,并使用EDX,阻抗谱和光度分析计算扩散系数。使用常规的四点测量来确定电阻率。 HCl_(conc)。掺杂的PAni的质子电导率大约是参考材料117的质子电导率。确定氯离子在膜内的扩散系数在1.86和3.4 x 10〜(-8)之间。 cm〜2 s〜(-1)。尽管发现掺有卤化物的膜是质子传导性的,但燃料电池运行过程中卤化物的去除速度很慢,导致电池性能迅速下降。因此,得出的结论是,为了制备适合燃料电池应用的PAni膜,将有必要用酸掺杂PAni,使得不会发生掺杂剂的损失。掺杂固体酸或大分子酸(以降低其扩散性)可能是解决该问题的方法。

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