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Effective Oxygen Reduction Reaction Performance of FeCo Alloys In Situ Anchored on Nitrogen-Doped Carbon by the Microwave-Assistant Carbon Bath Method and Subsequent Plasma Etching

机译:微波辅助碳浴法及随后的等离子刻蚀法将FeCo合金原位固定在掺氮碳上的有效氧还原反应性能

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摘要

Electrocatalysts with strong stability and high electrocatalytic activity have received increasing interest for oxygen reduction reactions (ORRs) in the cathodes of energy storage and conversion devices, such as fuel cells and metal-air batteries. However, there are still several bottleneck problems concerning stability, efficiency, and cost, which prevent the development of ORR catalysts. Herein, we prepared bimetal FeCo alloy nanoparticles wrapped in Nitrogen (N)-doped graphitic carbon, using Co-Fe Prussian blue analogs (Co3[Fe(CN)6]2, Co-Fe PBA) by the microwave-assisted carbon bath method (MW-CBM) as a precursor, followed by dielectric barrier discharge (DBD) plasma treatment. This novel preparation strategy not only possessed a fast synthesis rate by MW-CBM, but also caused an increase in defect sites by DBD plasma treatment. It is believed that the co-existence of Fe/Co-N sites, rich active sites, core-shell structure, and FeCo alloys could jointly enhance the catalytic activity of ORRs. The obtained catalyst exhibited a positive half-wave potential of 0.88 V vs. reversible hydrogen electrode (RHE) and an onset potential of 0.95 V vs. RHE for ORRs. The catalyst showed a higher selectivity and long-term stability than Pt/C towards ORR in alkaline media.
机译:具有高稳定性和高电催化活性的电催化剂已越来越受到人们的关注,它们涉及能量存储和转换装置(例如燃料电池和金属空气电池)阴极中的氧还原反应(ORR)。然而,仍然存在关于稳定性,效率和成本的几个瓶颈问题,其阻碍了ORR催化剂的发展。在这里,我们通过微波辅助碳浴法,使用钴铁普鲁士蓝类似物(Co3 [Fe(CN)6] 2,Co-Fe PBA)制备了掺有氮掺杂石墨碳的双金属FeCo合金纳米颗粒。 (MW-CBM)作为前驱物,然后进行介电势垒放电(DBD)等离子体处理。这种新颖的制备策略不仅具有通过MW-CBM的快速合成速率,而且还通过DBD等离子体处理引起了缺陷位点的增加。据信,Fe / Co-N位点,富活性位点,核-壳结构和FeCo合金的共存可以共同增强ORR的催化活性。对于ORR,获得的催化剂相对于可逆氢电极(RHE)表现出0.88 V的正半波电势,相对于RHE表现出0.95 V的开始电势。在碱性介质中,该催化剂对ORR的选择性和长期稳定性高于Pt / C。

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