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首页> 外文期刊>Advanced energy materials >Highly Efficient Oxygen Reduction Reaction Activity of Graphitic Tube Encapsulating Nitrided Co_xFe_y Alloy
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Highly Efficient Oxygen Reduction Reaction Activity of Graphitic Tube Encapsulating Nitrided Co_xFe_y Alloy

机译:石墨化氮化Co_xFe_y合金管的高效氧还原反应活性

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摘要

Nonprecious metals are promising catalysts to avoid the sluggish oxygen reduction reaction (ORR) in next-generation regenerative fuel cells or metalair batteries. Therefore, development of nonprecious metal catalysts for ORR is highly desirable. Herein, precise tuning of the atomic ratio of Fe and Co encapsulated in melamine-derived nitrogen-rich graphitic tube (NGT) is reported. The Co1.08Fe3.34 hybrid with metal. nitrogen bonds (1: Co1.08Fe3.34@ NGT) shows remarkable ORR catalytic activities (80 mV higher in onset potential and 50 mV higher in half-wave potential than those of state-ofthe- art commercial Pt/C catalysts), high current density, and stability. In acidic solution, 1 also shows compatible performance to commercial Pt/C in terms of ORR activity, current density, stability, and methanol tolerance. The high ORR activity is ascribed to the co-existence of Fe-N, Co-N, and sufficient metallic FeCo alloys which favor faster electron movement and better adsorption of oxygen molecules on the catalyst surface. In the alkaline anion exchange membrane fuel cell setup, this cell delivers the power density of 117 mW cm(-2), demonstrating its potential use for energy conversion and storage applications.
机译:非贵金属是有望避免新一代再生燃料电池或金属空气电池中缓慢的氧气还原反应(ORR)的催化剂。因此,非常需要开发用于ORR的非贵金属催化剂。本文中,报道了精确封装在三聚氰胺衍生的富氮石墨管(NGT)中的Fe和Co的原子比。 Co1.08Fe3.34与金属混合。氮键(1:Co1.08Fe3.34 @ NGT)表现出显着的ORR催化活性(比最先进的商用Pt / C催化剂高80 mV的起始电势和半波电势的50 mV高)电流密度和稳定性。在酸性溶液中,1在ORR活性,电流密度,稳定性和甲醇耐受性方面也表现出与商用Pt / C兼容的性能。高ORR活性归因于Fe-N,Co-N和足够的金属FeCo合金的共存,它们有利于更快的电子运动和更好的氧分子在催化剂表面的吸附。在碱性阴离子交换膜燃料电池设置中,该电池可提供117 mW cm(-2)的功率密度,证明了其在能量转换和存储应用中的潜在用途。

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