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Enhanced Oxygen Reduction Reaction In Air-Cathode Microbial Fuel Cells Using Flower-Like Co3O4 As An Efficient Cathode Catalyst

机译:花样Co3O4作为高效阴极催化剂在空气阴极微生物燃料电池中增强的氧还原反应

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摘要

In this study, the potential of mesoporous flower-like Co3O4 is investigated for the application of oxygen reduction reaction (ORR) in aqueous air-cathode microbial fuel cell (MFC). The flower-like Co3O4 was prepared by a hydrothermal route. The X-ray photoelectron spectroscopy results suggested that flower-like Co3O4 contained positively charged ions i.e., Co2+/Co3+ on its surface that probably acted as ORR active sites. The electrochemical tests demonstrated that flower-like Co3O4 enhanced the electrocatalytic activity of the cathode significantly as the onset potentials obtained in cyclic voltammetry and linear sweep voltammetry were more positive than the bare cathode. Besides, Tafel plots showed that Co3O4 increased the electron transfer kinetics and achieved an exchange current density of 2.46 A/m2, which was ∼30% higher than bare cathode. Subsequently, this improved ORR activity increased the power output in the MFC and a maximum power density of 248 mW/m2 was achieved, which was 6.3 times higher than the bare cathode. The higher ORR activity and improved electric output in the MFC could be attributed to the excellent electrocatalytic activity of Co2+/Co3+ and mesoporous nature of flower-like Co3O4 that exposed extra active sites for oxygen molecules on the cathode surface.
机译:在这项研究中,研究了介孔花状Co3O4在氧气还原空气微生物燃料电池(MFC)中应用氧还原反应(ORR)的潜力。通过水热法制备花状的Co 3 O 4。 X射线光电子能谱的结果表明,花状的Co3O4在其表面上含有带正电的离子,即Co2 + / Co3 +,可能起ORR活性位点的作用。电化学测试表明,花状Co3O4显着增强了阴极的电催化活性,因为在循环伏安法和线性扫描伏安法中获得的起始电势比裸露的阴极更正。此外,塔菲尔曲线表明,Co3O4提高了电子转移动力学,交换电流密度为2.46 A / m2,比裸露阴极高约30%。随后,这种提高的ORR活性增加了MFC中的功率输出,并实现了248 mW / m2的最大功率密度,这是裸阴极的6.3倍。 MFC中较高的ORR活性和改善的电输出可以归因于Co2 + / Co3 +的出色电催化活性以及花状Co3O4的介孔性质,该花状Co3O4暴露了阴极表面氧分子的额外活性位。

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