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Cobalt nanoparticles embedded in N-doped carbon as an efficient bifunctional electrocatalyst for oxygen reduction and evolution reactions

机译:钴纳米粒子嵌入在n型碳一个高效的双官能electrocatalyst氧还原和演化的反应

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Cobalt based catalysts are promising Afunctional electrocatalysts for both oxygen reduction and oxygen evolution reactions (ORR and OER) in unitized regenerative fuel cells (URFCs) operating with alkaline electrolytes. Here we report a hybrid composite of cobalt nanoparticles embedded in nitrogen-doped carbon (Co/N-C) via a solvothermal carbonization strategy. With the synergistic effect arising from the N-doped carbon and cobalt nanoparticles in the composite, the Co/N-C hybrid catalyst exhibits highly efficient bifunctional catalytic activity and excellent stability toward both ORR and OER. The AE (oxygen electrode activity parameter for judging the overall electrocatalytic activity of a bifunctional electrocatalyst) value for Co/N-C is 0.859 V, which is smaller than those of Pt/C and most of the non-precious metal catalysts in previous studies. Furthermore, the Co/N-C composite also shows better bifunctional catalytic activity than its oxidative counterparts, which could be attributed to the high specific surface area and the efficient charge transfer ability of the composite, as well as the good synergistic effect between N-doped carbon and the Co nanoparticles in the Co/N-C composite.
机译:基于钴催化剂是很有前途的Afunctional对氧还原和electrocatalysts氧进化反应(奥尔和OER)再生燃料电池成组(URFCs)操作与碱性电解质。报告钴纳米颗粒的混合组合嵌入在nitrogen-doped碳(公司/ c)通过solvothermal碳化的策略。协同效应产生的n型碳和钴纳米粒子复合,有限公司/ c混合催化剂表现出高度高效的双功能催化活性和出色的稳定性对奥尔和OER。AE参数(氧电极的活动判断的整体electrocatalytic活动双官能electrocatalyst)有限公司/ c值是0.859 V,小于Pt / C和大多数non-precious金属催化剂先前的研究。复合材料还显示了更好的双官能比它的氧化催化活性,这可能归因于高的比表面积和高效电荷转移能力的组合n型之间的良好协同效应碳和纳米粒子在有限公司/ c合成的。

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