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深入了解铁氮活性位点在碳载超分子催化剂上氧还原反应中的作用。

Insights into the role of an Fe-N active site in the oxygen reduction reaction on carbon-supported supramolecular catalysts.

作者信息

Gu Lin, Dong Yunyun, Zhang Yan, Wang Bo, Yuan Qing, Du Hongmei, Zhao Jinsheng

机构信息

Shandong Key Laboratory of Chemical Energy Storage and Novel Cell Technology, Liaocheng University Liaocheng 252059 P. R. China

College of Chemistry and Chemical Engineering, Liaocheng University Liaocheng 252059 P. R. China

出版信息

RSC Adv. 2020 Feb 28;10(15):8709-8716. doi: 10.1039/c9ra09301j. eCollection 2020 Feb 27.

Abstract

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 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 RHE) in 0.1 M KOH. Such an Fe-N catalyst can accelerate the adsorption of O and increase the limiting current density (from 2.49 mA cm to 4.98 mA cm), optimizing the ORR catalytic process from a two-electron process to a four-electron process (an value of 3.8).

摘要

在本研究中,为了进行氧还原反应(ORR),使用2,6-吡啶二甲酰氯和3,5-二氨基-1,2,4-三唑成功合成了一种名为PPYTZ的含氮配体超分子。这种聚合物为铁离子提供了丰富的配位位点,并且通过将PPYTZ-Fe络合物负载在Vulcan XC-72碳表面形成了PPYTZ-Fe/C复合催化剂。利用各种相关技术系统地表征了复合催化剂的物理特性和ORR性能,并对其催化活性和反应机理进行了评估和比较。结果表明,ORR的催化活性和反应机理高度依赖于Fe-N单元的形成。因此,含有Fe-N活性位点的PPYTZ-Fe/C催化剂在0.1 M KOH中表现出高ORR催化活性(相对于可逆氢电极的起始电位为+0.86 V)。这种Fe-N催化剂可以加速O的吸附并增加极限电流密度(从2.49 mA cm增加到4.98 mA cm),将ORR催化过程从双电子过程优化为四电子过程(α值为3.8)。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ae25/9050072/4bb20033829f/c9ra09301j-s1.jpg

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