Design of N‑Coordinated Dual-Metal Sites: A Stable and Active Pt-Free Catalyst for Acidic Oxygen Reduction Reaction.

We develop a host-guest strategy to construct an electrocatalyst with Fe-Co dual sites embedded on N-doped porous carbon and demonstrate its activity for oxygen reduction reaction in acidic electrolyte. Our catalyst exhibits superior oxygen reduction reaction performance, with comparable onset poten...

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Detalles Bibliográficos
Publicado en:Journal of the American Chemical Society Vol. 139; no. 48; pp. 17281 - 17285
Autores principales: Jing Wang, Zhengqing Huang, Wei Liu, Chunran Chang, Haolin Tang, Zhijun Li, Wenxing Chen, Chunjiang Jia, Tao Yao, Shiqiang Wei, Yuen Wu, Yadong Li
Formato: Artículo
Publicado: American Chemical Society 12/6/2017
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Acceso en línea:Ver este registro en EBSCOhost
Descripción
Sumario:We develop a host-guest strategy to construct an electrocatalyst with Fe-Co dual sites embedded on N-doped porous carbon and demonstrate its activity for oxygen reduction reaction in acidic electrolyte. Our catalyst exhibits superior oxygen reduction reaction performance, with comparable onset potential (E, 1.06 vs 1.03 V) and half-wave potential (E, 0.863 vs 0.858 V) than commercial Pt/C. The fuel cell test reveals (Fe,Co)/N-C outperforms most reported Pt-free catalysts in H/O and H2/air. In addition, this cathode catalyst with dual metal sites is stable in a long-term operation with 50 000 cycles for electrode measurement and 100 h for H/air single cell operation. Density functional theory calculations reveal the dual sites is favored for activation of O-O, crucial for four-electron oxygen reduction.