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首页> 外文期刊>Journal of solid state electrochemistry >The sum is more than its parts: stability of MnFe oxide nanoparticles supported on oxygen-functionalized multi-walled carbon nanotubes at alternating oxygen reduction reaction and oxygen evolution reaction conditions
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The sum is more than its parts: stability of MnFe oxide nanoparticles supported on oxygen-functionalized multi-walled carbon nanotubes at alternating oxygen reduction reaction and oxygen evolution reaction conditions

机译:该总和的份额是:在交替的氧还原反应和氧气进化反应条件下负载在氧官能化的多壁碳纳米管上的MnFe氧化物纳米颗粒的稳定性

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摘要

Successful design of reversible oxygen electrocatalysts does not only require to consider their activity towards the oxygen reduction (ORR) and the oxygen evolution reactions (OER), but also their electrochemical stability at alternating ORR and OER operating conditions, which is important for potential applications in reversible electrolyzers/fuel cells or metal/air batteries. We show that the combination of catalyst materials containing stable ORR active sites with those containing stable OER active sites may result in a stable ORR/OER catalyst if each of the active components can satisfy the current demand of their respective reaction. We compare the ORR/OER performances of oxides of Mn (stable ORR active sites), Fe (stable OER active sites), and bimetallic Mn0.5Fe0.5 (reversible ORR/OER catalyst) supported on oxidized multi-walled carbon nanotubes. Despite the instability of Mn and Fe oxide for the OER and the ORR, respectively, Mn0.5Fe0.5 exhibits high stability for both reactions.
机译:可逆氧电催化剂的成功设计不仅需要考虑其氧气减少(ORR)和氧气进化反应(OER)的活动,还需要在交替的ORR和OER操作条件下的电化学稳定性,这对于潜在的应用是重要的可逆电解槽/燃料电池或金属/空气电池。我们表明,如果每个活性组分可以满足其各自反应的当前需求,则含有稳定的ORR活性位点的含有稳定ORR活性位点的催化剂材料的组合可能导致稳定的ORR / OER催化剂。我们比较氧化多壁碳纳米管的氧化Mn(稳定Orr活性位点),Fe(稳定ORR活性位点),Fe(稳定Oer活性位点),Fe(稳定Oer活性位点)和双金属MN0.5FE0.5(可逆ORR / oer催化剂)的ORR / OER性能。尽管Oer和ORR的不稳定性和Fe氧化物,但Mn0.5Fe0.5分别表现出高度的稳定性。

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