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首页> 外文期刊>RSC Advances >Insights into the role of an Fe–N active site in the oxygen reduction reaction on carbon-supported supramolecular catalysts
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Insights into the role of an Fe–N active site in the oxygen reduction reaction on carbon-supported supramolecular catalysts

机译:Fe-N活性位点在碳负载的超分子催化剂上氧还原反应中的作用见解

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In this study, a nitrogen-containing ligand supramolecule named PPYTZ was successfully synthesized using 2,6-pyridinedicarboxylic acid chloride and 3,5-diamino-1,2,4-triazole in order to carry out oxygen reduction reaction (ORR). Such a polymer provides abundant coordination sites for iron ions, and the PPYTZ–Fe/C composite catalyst was formed with the PPYTZ–Fe complex loading on the surface of Vulcan XC-72 carbon. The physical characteristics and ORR performance of the composite catalysts were characterized systematically via various relevant techniques, and their catalytic activity and reaction mechanism were evaluated and compared. The results showed that the catalytic activities and the reaction mechanism of ORR were highly dependent on the formation of an Fe–N unit. Accordingly, the PPYTZ–Fe/C catalyst containing Fe–N active sites exhibited high ORR catalytic activity (an onset potential of +0.86 V vs. RHE) in 0.1 M KOH. Such an Fe–N catalyst can accelerate the adsorption of O _(2) and increase the limiting current density (from 2.49 mA cm ~(?2) to 4.98 mA cm ~(?2) ), optimizing the ORR catalytic process from a two-electron process to a four-electron process (an n value of 3.8).
机译:在该研究中,使用2,6-吡啶二羧酸氯和3,5-氨基-1,2,4-三唑成功合成了名为PPYTZ的含氮配体Suprameule,以进行氧还原反应(ORR)。这种聚合物为铁离子提供丰富的配位部位,并且PPYTZ-Fe / C复合催化剂用硫磺XC-72碳表面上的PpyTZ-Fe络合物负载形成。通过各种相关技术系统地表征复合催化剂的物理特性和ORR性能,并评估其催化活性和反应机理。结果表明,ORR的催化活性和反应机理高度依赖于Fe-N单位的形成。因此,含有Fe-N活性位点的PPYTZ-Fe / C催化剂在0.1M KOH中表现出高抗体催化活性(发病率+0.86V与rhe)。这种Fe-N催化剂可以加速O _(2)的吸附,并增加限制电流密度(从2.49 mA cm〜(α2)到4.98 mA cm〜(α2)),从a中优化ORR催化过程双电子过程到四电子过程(n值为3.8)。

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