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首页> 外文期刊>Nanoscale >Hierarchically porous Fe-N-C derived from covalent-organic materials as a highly efficient electrocatalyst for oxygen reduction
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Hierarchically porous Fe-N-C derived from covalent-organic materials as a highly efficient electrocatalyst for oxygen reduction

机译:分层多孔Fe-N-C来自作为一个高效covalent-organic材料electrocatalyst氧气减少

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Developing high-performance non-precious catalysts to replace platinum as oxygen reduction reaction (ORR) catalysts is still a big scientific and technological challenge. Herein, we report a simple method for the synthesis of a FeNC catalyst with a 3D hierarchically micro/meso/macro porous network and high surface area through a simple carbonization method by taking the advantages of a high specific surface area and diverse pore dimensions in 3D porous covalent-organic material. The resulting FeNC-900 electrocatalyst with improved reactant/electrolyte transport and sufficient active site exposure, exhibits outstanding ORR activity with a half-wave potential of 0.878 V, ca. 40 mV more positive than Pt/C for ORR in alkaline solution, and a half-wave potential of 0.72 V, which is comparable to that of Pt/C in acidic solution. In particular, the resulting FeNC-900 exhibits a much higher stability and methanol tolerance than those of Pt/C, which makes it among the best non-precious catalysts ever reported for ORR.
机译:发展高性能non-precious催化剂取代铂作为氧还原反应(ORR)催化剂仍然是一个很大的科学技术挑战。FeNC的合成的简单方法催化剂与3 d等级微观/内消旋/宏观多孔网络和高表面通过一个简单的碳化方法比表面积高的优点区域和不同孔隙尺寸在三维多孔covalent-organic材料。electrocatalyst与改进反应物/电解液运输和充分的活性部位暴露,展示优秀的奥尔活动0.878 V的半波电位,ca。40 mV比奥尔Pt / C的更积极碱性溶液和半波的潜力0.72 V,这可比的Pt / C酸性溶液。更高的稳定性和fenc - 900展品甲醇比Pt / C,宽容使它non-precious最好的催化剂或者曾经报道。

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