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Oxygen Reduction Reaction on Metal and Nitrogen-Doped Carbon Electrocatalysts in the Presence of Sodium Borohydride

机译:硼氢化钠存在下金属和氮掺杂碳电催化剂的氧还原反应

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摘要

Metal and nitrogen-doped carbon electrocatalysts (M-N-C, where M is Fe or Co) were investigated for the oxygen reduction reaction (ORR) in alkaline conditions in the presence of borohydride ions (BH4-). The electrochemical properties of the Fe-N-C and Co-N-C catalysts were investigated by cyclic voltammetry and rotating disk electrode techniques: their ORR electrocatalytic activity was bridged to their physicochemical properties, mainly type of metallic center (Fe vs. Co), structure (atomic dispersion vs. nanoparticles), and BET surface area. It is found that Fe-N-C catalysts have the best performances for the ORR electrocatalysis, even in the presence of BH4- anions. The atomically dispersed Fe- and Co-containing electrocatalysts reach better BH4--tolerance than their counterparts baring nanoparticles. For the atomically dispersed Fe-N-C electrocatalysts, the lowest BET surface area material generates a slight advantage of ORR mass activity and a poor (and desired) activity for borohydride oxidation reaction (BOR).
机译:在硼氢化氢离子(BH4-)存在下,研究了金属和氮掺杂的碳电催化剂(M-N-C,其中M是FE或CO)的碱性条件下的氧还原反应(ORR)。通过循环伏安法和旋转盘电极技术研究了Fe-NC和Co-NC催化剂的电化学性质:它们的ORR电催化活性桥接到其物理化学性质,主要是金属中心(Fe Vs.Co),结构(原子分散与纳米颗粒)和BET表面积。结果发现,即使在BH 4阴离子存在下,Fe-N-C催化剂也具有用于ORR电闭合的最佳性能。原子地分散的Fe-和Co型电催化剂达到比其对应物纳米颗粒的更好的BH4耐受性。对于原子分散的Fe-N-C电催化剂,最低的BET表面积材料产生易于氢化硼氧化反应(BOR)的ORR质量活性和差(和所需)活性的微小优势。

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