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Thermally Converted CoO Nanoparticles Embedded into N-Doped Carbon Layers as Highly Efficient Bifunctional Electrocatalysts for Oxygen Reduction and Oxygen Evolution Reactions

机译:将热转化的CoO纳米颗粒嵌入N掺杂的碳层,作为高效的双官能电催化剂用于氧还原和氧气进化反应

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摘要

Hybrid materials that consist of transition-metal oxides and heteroatom-doped carbon materials have been researched recently as promising bifunctional electrocatalysts for both oxygen-reduction reaction (ORR) and oxygen-evolution reaction (OER) in alkaline media. Herein, CoO nanoparticles embedded into N-doped carbon layers were synthesized by a thermal conversion process of polypyrrole-coated Co3O4 nanoparticles supported on a carbon layer in Ar atmosphere at 900 degrees C. During the process, the initial Co3O4 phase was transformed to the CoO phase along with the thermal carbonization of the polypyrrole layer to the N-doped carbon layer. Owing to the oxidative combustion induced by the O species released from the Co3O4 nanoparticles, the N-doped carbon layer could contain pores around the CoO nanoparticles. Alkaline electrolytes could penetrate the N-doped carbon layer toward the CoO nanoparticles through the pores. The nanocomposites with the well-assembled CoO nanoparticles and porous N-doped carbon layer could exhibit superior catalytic activity for ORR and OER. In addition, the N-doped carbon layers effectively prevent the degradation of the catalyst by protecting the CoO nanoparticles from aggregation during the electrocatalytic processes. The hybrid material of CoO and N-doped carbon showing highly active and durable catalytic characteristics for ORR and OER is a promising electrocatalyst in fuel cells, metal-air batteries, and water-splitting systems and could be used instead of precious metals such as Pt, Ru, and Ir.
机译:最近已经研究了由过渡 - 金属氧化物和杂原子掺杂的碳材料组成的杂化材料作为碱性介质中的氧还原反应(ORR)和氧化反应(OER)的有前途的双官能电催化剂。这里,通过在Ar气氛中在900℃的Ar气氛中负载在碳层的热转换过程中嵌入N掺杂碳层的CoO纳米颗粒合成。在该过程中,将初始CO3O4相转化为COO相对于聚吡咯层的热碳化到N掺杂的碳层。由于由CO 3 O 4纳米颗粒释放的O物质诱导的氧化燃烧,N掺杂的碳层可含有孔纳米颗粒周围的孔。碱性电解质可以通过孔渗透到官方纳米颗粒上的n掺杂的碳层。具有良好组装的CoO纳米颗粒和多孔N掺杂碳层的纳米复合材料可以表现出用于ORR和OER的优异的催化活性。另外,通过在电催化过程中保护CoO纳米颗粒免受聚集来有效地防止催化剂的降解。 CoO和N掺杂碳的杂化材料显示出用于ORR和OER的高活性和耐用的催化特性是燃料电池,金属 - 空气电池和水分裂系统中有充满希望的电催化剂,并且可以使用代替贵金属,例如PT ,ru和ir。

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