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Electrochemical Performance Improvement of the Catalyst of the Methanol Microfuel Cell Using Carbon Nanotubes

机译:碳纳米管甲醇微膳电池催化剂的电化学性能改善

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In this research, the electrocatalytic activity of platinum-ruthenium nanoparticles on carbon nanotubes and carbon black in methanol oxidation reaction has been investigated. Moreover, the electrochemical performance of a single passive direct methanol fuel cell run by these two different electrocatalysts has been reported. Physical characterization and electrochemical tests reveal the superiority of PtRu on carbon nanotubes. Based on the voltammetry outcomes, it was found that methanol oxidation reaction kinetics has been improved on the nanotube-supported catalyst. The current density of oxidation reaction has increased up to 62% in nanotube sample compared to carbon black-supported one. The electrochemical test results have shown that the carbon nanotubes increase the performance of the microfuel cell by 37% at maximum power density, compared to the carbon black. Moreover, the resistance of the samples supported by carbon nanotubes to poisonous intermediate species has been found 3% more than carbon black-supported one. According to the chronoamperometry test results, it was concluded that the performance and sustainability of the carbon nanotube electrocatalyst show a remarkable improvement compared to carbon black electrocatalyst in the long term.
机译:在本研究中,研究了甘氨酸钌纳米粒子对碳纳米管和炭黑的电催化活性,已经研究过甲醇氧化反应中的碳纳米管和炭黑。此外,已经报道了这两种不同电催化剂的单一无源直接甲醇燃料电池的电化学性能。物理特征和电化学测试揭示了PTRU对碳纳米管的优越性。基于伏安型结果,发现甲醇氧化反应动力学已在纳米管负载的催化剂上得到改善。与炭黑负载的单位相比,当前氧化反应密度增加高达62%的纳米管样品。与炭黑相比,电化学试验结果表明,碳纳米管以最大功率密度提高了37%的微量燃料电池的性能。此外,已经发现由碳纳米管与有毒中间体物质的样品的抗性已发现3%,比炭黑支持的一个含量超过3%。根据计时率测试结果,得出结论是,与长期炭黑电催化剂相比,碳纳米管电催化剂的性能和可持续性显示出显着的改善。

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