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首页> 外文期刊>ACS applied materials & interfaces >A 'MOF-Protective-Pyrolysis' Strategy for the Preparation of Fe-N-C Catalysts and the Role of Fe, N, and C in the Oxygen Reduction Reaction in Acidic Medium
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A 'MOF-Protective-Pyrolysis' Strategy for the Preparation of Fe-N-C Catalysts and the Role of Fe, N, and C in the Oxygen Reduction Reaction in Acidic Medium

机译:用于制备Fe-N-C催化剂的“Mof-Protective-peyrolysics”策略及Fe,N和C在酸性介质中的氧还原反应中的作用

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M-N-C electrocatalysts for the oxygen reduction reaction (ORR) have been considered as the most promising alternatives to precious metal catalysts. However, the catalytic activity of M-N-C especially in an acidic medium is still unable to meet the practical requirement, and the corresponding ORR mechanism also remains unclear. Herein, an "MOF-protective-pyrolysis" strategy was adopted to synthesize an Fe-N-C catalyst (P-FeMOF@ZIF-8) with Fe-N4 as the predominant Fe species. The P-FeMOF@ZIF-8 displays high catalytic activity in both acidic and alkaline mediums. The experimental results further reveal the different importance of the Fe species in different mediums. Based on the results, a distinct mechanism of the ORR the in acidic medium was proposed, where the synergistic effect of the Fe-N4 site and carbon in improving the kinetics of the ORR were well explained. The findings and the corresponding perspective may provide a new guidance for the design of highly efficient ORR electrocatalysts.
机译:用于氧还原反应(ORR)的M-N-C电催化剂被认为是最有前途的金属催化剂的替代品。然而,尤其在酸性介质中的M-N-C催化活性仍然无法满足实际要求,并且相应的ORR机制也尚不清楚。在此,采用“MOF保护 - 热解”策略用Fe-N4合成Fe-N-C催化剂(P-FEMOF @ ZIF-8)作为主要的Fe物种。 P-FEMOF @ ZIF-8在酸性和碱性介质中显示出高催化活性。实验结果进一步揭示了不同介质中Fe种的不同重要性。基于该结果,提出了酸性介质的不同机制,其中Fe-N4位点和碳在改善ORR动力学方面的协同效应得到了很好的解释。调查结果和相应的透视可以为高效ORR电催化剂设计提供一种新的指导。

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