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Axial ligand effect on the stability of Fe-N-C electrocatalysts for acidic oxygen reduction reaction

机译:轴向配体对Fe-N-C电催化剂酸性氧还原反应稳定性的影响

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摘要

Iron and nitrogen co-doped carbons (Fe-N-C) have comparable activity to Pt-based catalysts for oxygen reduction reaction (ORR),but with much poorer durability in acidic electrolytes.Recently,regulating the coordination environment of Fe center (in-plane or axially) to boost the ORR activity of Fe-N-C has attracted many interests,and the axial OH ligand is even regarded as a necessary part of a highly-active structure.However,the influence of these regulations on the stability is still not clear.Herein,we performed kinetic and thermodynamic calculations based on density functional theory with explicit consideration of electrode potential to study the OH axial ligand effect on the stability of Fe-N-C electrocatalysts.We found that although the OH ligand can enhance the ORR onset potential to some extent,it substantially increases the H_2O_2 selectivity,pushing ORR diverted to the 2e- + 2e-pathway.In the latter 2e-process (H_2O_2 reduction),harmful hydroxyl radicals could be produced upon H_2O_2 dissociation.Therefore,from the perspective of catalysts' stability,OH ligand coordination on the metal center is not a good way to develop stable ORR catalysts.
机译:铁氮共掺杂碳(Fe-N-C)在氧还原反应(ORR)中的活性与铂基催化剂相当,但在酸性电解质中的耐久性要差得多。近年来,调控Fe中心(面内或轴向)的配位环境以提高Fe-N-C的ORR活性引起了许多关注,轴向OH配体甚至被认为是高活性结构的必要组成部分。然而,这些规定对稳定性的影响尚不清楚。本文基于密度泛函理论,明确考虑电极电位,进行了动力学和热力学计算,研究了OH轴向配体对Fe-N-C电催化剂稳定性的影响。我们发现,虽然OH配体可以在一定程度上提高ORR的起病潜力,但它显著提高了H_2O_2选择性,推动了ORR向2e-+2e-通路的转移。在后2e过程(H_2O_2还原)中,解离H_2O_2会产生有害的羟基自由基。因此,从催化剂稳定性的角度来看,OH配体在金属中心配位并不是开发稳定ORR催化剂的好方法。

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