首页> 外文期刊>Electrochimica Acta >Investigation of carbon monoxide tolerance of platinum nanoparticles in the presence of optimum ratio of doped polyaniline with para toluene sulfonic acid and their utilization in a real passive direct methanol fuel cell
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Investigation of carbon monoxide tolerance of platinum nanoparticles in the presence of optimum ratio of doped polyaniline with para toluene sulfonic acid and their utilization in a real passive direct methanol fuel cell

机译:掺杂聚苯胺与对甲苯磺酸的最佳比例存在下铂纳米粒子对一氧化碳的耐受性研究及其在实际被动式直接甲醇燃料电池中的利用

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摘要

Polyaniline fiber (PANI) was synthesized by chemical interfacial method and doped with para toluene sulfonic acid (PTSA) through a sequential doping-dedoping-redoping process resulting in PANI-PTSA. The doped material was utilized to fabricate Vulcan-polyaniline composite of C-PANI-PTSA. Next, through reduction, Pt particles were deposited on to this composite to produce a Pt/C-PANI-PTSA electrocatalyst. To investigate the PANI-PTSA interaction with the carbon support as well as, to consider its effect upon the catalytic activity of Pt/C-PANI-PTSA, electrocatalysts with different ratios of 10, 15, 20, 25 and 30 wt% were synthesized and their activity was compared with the Pt/C (Electrochem). Results revealed that, the peak current density in methanol electro-oxidation, electrochemical surface area, methanol diffusion coefficient, charge transfer resistance as well as; the stability of the Pt/C-20%PANI-PTSA electrocatalyst were all markedly improved for the synthesized material. Moreover, the Pt/C-20%PANI-PTSA was demonstrated to be more CO tolerant according to the CO stripping voltammetry test. Also powder XRD and TEM techniques were utilized to investigate the crystallite size and the surface morphologies of the catalysts. Finally, the performance of Pt/C-20%PANI-PTSA was compared with Pt/C (Electrochem) in a passive direct methanol fuel cell and the effect of PANI-PTSA on methanol crossover and fuel utilization was analyzed. Ultimately, the Pt/C-20%PANI-PTSA modified catalyst was shown to be more suitable for applying in the direct methanol fuel cells (DMFC) compared with the commercial Pt/C material.
机译:采用化学界面法合成了聚苯胺纤维(PANI),并通过顺序掺杂-去掺杂-重掺杂工艺掺入对甲苯磺酸(PTSA),得到PANI-PTSA。掺杂的材料用于制造C-PANI-PTSA的Vulcan-聚苯胺复合材料。接下来,通过还原,将Pt颗粒沉积到该复合材料上,以生产Pt / C-PANI-PTSA电催化剂。为了研究PANI-PTSA与碳载体的相互作用以及考虑其对Pt / C-PANI-PTSA催化活性的影响,合成了比例分别为10、15、20、25和30 wt%的电催化剂。并将它们的活性与Pt / C(Electrochem)进行比较。结果表明,甲醇电氧化的峰值电流密度,电化学表面积,甲醇扩散系数,电荷转移电阻以及对于合成材料,Pt / C-20%PANI-PTSA电催化剂的稳定性均得到了显着提高。此外,根据CO汽提伏安法测试证明Pt / C-20%PANI-PTSA对CO的耐受性更高。粉末XRD和TEM技术也用于研究催化剂的微晶尺寸和表面形态。最后,将Pt / C-20%PANI-PTSA与Pt / C(Electrochem)在被动式直接甲醇燃料电池中的性能进行了比较,并分析了PANI-PTSA对甲醇交换和燃料利用的影响。最终,与商业Pt / C材料相比,Pt / C-20%PANI-PTSA改性催化剂显示出更适合直接甲醇燃料电池(DMFC)中的应用。

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