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Manganese Oxide Coated Carbon Materials as Hybrid Catalysts for the Application in Primary Aqueous Metal-Air Batteries

机译:氧化锰包覆碳材料作为混合催化剂在金属水-空气电池中的应用

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摘要

One of the major challenges of metal-air batteries is the impeded oxygen reduction reaction (ORR) during discharge occurring at the gas diffusion electrode (GDE) of the battery. Due to the impeded ORR, high overpotentials emerge and result in a loss of energy efficiency. In order to improve the latter, suitable catalysts have to be employed. Transition metal oxides like manganese oxides (e.g., MnO2, Mn2O3, Mn3O4, Mn5O8, MnOOH) [1,2] are known as good and inexpensive materials for the ORR in alkaline media. A drawback of manganese oxide catalysts is the poor electrical conductivity. Hence, the approach presented in this work aims to enhance the catalytic activity of Mn3O4 and γ–MnO2 by the incorporation of conductive carbon material into the pure manganese oxide. The resulting hybrid catalysts are prepared either by impregnation of Super C 65, Vulcan XC 72, and Kuraray YP 50F via a sol-gel technique employing a MnO2 precursor sol or by direct precipitation of Mn3O4 or γ–MnO2 particles in the presence of the carbon materials mentioned above. Investigations by rotating disc electrode (RDE) show a noticeably higher catalytic activity of the hybrid catalysts than for the pure materials. For verification of the results measured by RDE, screen printed GDEs are prepared and tested in Zn-air full cells.
机译:金属-空气电池的主要挑战之一是在电池的气体扩散电极(GDE)上发生的放电过程中阻碍氧还原反应(ORR)。由于ORR受阻,会出现高电势并导致能量效率下降。为了改善后者,必须使用合适的催化剂。像锰氧化物这样的过渡金属氧化物(例如MnO2,Mn2O3,Mn3O4,Mn5O8,MnOOH)[1,2]是碱性介质中ORR的优质廉价材料。锰氧化物催化剂的缺点是导电性差。因此,这项工作提出的方法旨在通过将导电碳材料掺入纯锰氧化物中来增强Mn3O4和γ-MnO2的催化活性。通过使用MnO2前体溶胶的溶胶-凝胶技术,通过将Super C 65,Vulcan XC 72和Kuraray YP 50F浸渍或通过在碳存在下直接沉淀Mn3O4或γ–MnO2颗粒,可以制备所得的杂化催化剂。上述材料。旋转圆盘电极(RDE)的研究表明,杂化催化剂的催化活性明显高于纯物质。为了验证通过RDE测量的结果,准备了丝网印刷的GDE,并在Zn空气充满电池中进行了测试。

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