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Kinetics of sodium borohydride direct oxidation and oxygen reduction in sodium hydroxide electrolyte: Part II - O{sub}2 reduction

机译:氢氧化钠电解质中硼氢化钠直接氧化和氧还原的动力学:第二部分-O {sub} 2还原

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In order to mimic the operation of the air-cathode in a direct borohydride alkaline fuel cell, we studied the oxygen reduction reaction (ORR) in sodium hydroxide solution containing traces of borohydride. The activity of several ORR electrocatalysts, namely carbon-supported platinum, gold, silver and manganese oxide, has been investigated using slow-scan linear voltammetry. Whereas platinum is one of the best electrocatalyst in pure sodium hydroxide, none of the classical electrocatalysts: gold, silver and platinum, exhibit sufficient selectivity towards the ORR. When BH{sub}4{sup}- is present in solution, the potential taken by electrodes using such materials is a mixed potential, following the competition between the ORR and the NaBH{sub}4 hydrolysis and/or oxidation. Conversely, manganese oxide-based electrocatalysts exhibit very interesting behaviour towards the ORR in alkaline medium; while their intrinsic ORR activity in pure sodium hydroxide is quite as good as that for platinum, they still display a remarkable selectivity for this reaction when the electrolyte contains traces of sodium borohydride. As a result, carbon-supported manganese oxide-based nanoparticles seem very interesting materials to be used in direct borohydride fuel cell.
机译:为了模拟空气阴极在直接硼氢化物碱性燃料电池中的运行,我们研究了在含有痕量硼氢化物的氢氧化钠溶液中的氧还原反应(ORR)。使用慢扫描线性伏安法研究了几种ORR电催化剂的活性,即碳负载的铂,金,银和锰的氧化物。铂是纯氢氧化钠中最好的电催化剂之一,而经典的电催化剂:金,银和铂都没有表现出对ORR的足够的选择性。当溶液中存在BH {sub} 4 {sup}-时,在ORR与NaBH {sub} 4水解和/或氧化之​​间的竞争之后,使用此类材料的电极所吸收的电势为混合电势。相反,基于氧化锰的电催化剂在碱性介质中对ORR表现出非常有趣的行为。尽管它们在纯氢氧化钠中的固有ORR活性与铂相当,但当电解质中含有痕量的硼氢化钠时,它们对该反应仍显示出显着的选择性。结果,碳负载的基于氧化锰的纳米颗粒似乎是用于直接硼氢化物燃料电池的非常有趣的材料。

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