首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Fe, Co, N-functionalized carbon nanotubes in situ grown on 3D porous N-doped carbon foams as a noble metal-free catalyst for oxygen reduction
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Fe, Co, N-functionalized carbon nanotubes in situ grown on 3D porous N-doped carbon foams as a noble metal-free catalyst for oxygen reduction

机译:Fe,Co,N-官能化碳纳米管原位生长在3D多孔N掺杂碳泡沫上,作为不含贵金属的氧还原催化剂

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摘要

Designing and manipulating advanced oxygen reduction reaction (ORR) electrocatalysts are of critical importance for the widespread application of fuel cells. In this work, we report a highly versatile and one-pot pyrolysis route for the mass production of a novel three-dimensional N, Fe, Co-functionalized carbon nanotubes rigidly grown on N-doped carbon foams (3D FeCoN-CNTs/NCFs) serving as a noble-metal free catalyst for the oxygen reduction reaction (ORR). Different from the previously reported carbon materials, in the present 3D porous structure, the N, Fe, Co-doped carbon nanotubes are rigidly grown on the skeleton of 3D nitrogen-doped carbon foams (NCFs), showing a high electrochemical stability. Moreover, due to the synergistic effect of the Fe/Co and the N species with the formation of Fe/Co-N-x complexes in the 3D hybrid carbon material and the multiple active sites on the porous structure, the 3D hybrid displayed superior catalytic performance for ORR, high operation stability and strong methanol/CO crossover resistance in alkaline medium. The stable porous structure and the excellent catalytic performance make the 3D FeCoN-CNTs/NCFs a promising non-precious-metal cathodic electrocatalyst for fuel cells.
机译:设计和处理高级氧还原反应(ORR)电催化剂对于燃料电池的广泛应用至关重要。在这项工作中,我们报告了一种高度通用的一锅法热解路线,用于大规模生产在N掺杂碳泡沫(3D FeCoN-CNTs / NCFs)上刚性生长的新型三维N,Fe,Co功能化碳纳米管。用作氧还原反应(ORR)的无贵金属催化剂。与先前报道的碳材料不同,在当前的3D多孔结构中,N,Fe,Co掺杂的碳纳米管牢固地生长在3D氮掺杂碳泡沫(NCF)的骨架上,显示出很高的电化学稳定性。此外,由于Fe / Co和N物种在3D杂化碳材料中形成Fe / Co-Nx配合物以及多孔结构上的多个活性位点的协同作用,因此3D杂化显示出优异的催化性能ORR,在碱性介质中具有较高的操作稳定性和较强的抗甲醇/ CO穿越性。稳定的多孔结构和出色的催化性能使3D FeCoN-CNTs / NCFs成为有前途的燃料电池非贵金属阴极电催化剂。

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