电催化剂
合理设计
水溶液
法拉第效率
碳纳米管
催化作用
化学
氧化还原
贵金属
选择性
过渡金属
碳纤维
纳米材料
无机化学
氮气
化学工程
材料科学
电化学
纳米技术
电极
复合数
有机化学
物理化学
工程类
复合材料
作者
Ying Wang,Xiaoqiang Cui,Jingxiang Zhao,Guangri Jia,Lin Gu,Qinghua Zhang,Lingkun Meng,Zhan Shi,Lirong Zheng,Chunyu Wang,Ziwei Zhang,Weitao Zheng
标识
DOI:10.1021/acscatal.8b03802
摘要
Developing efficient noble-metal-free catalysts for the electrochemical N2 reduction reaction (NRR) under ambient conditions shows promise in fertilizer production and hydrogen storage. Here, as a proof-of-concept prototype, we design and implement an Fe–N/C–carbon nanotube (CNT) catalyst derived from a metal–organic framework and carbon-nanotube-based composite with built-in Fe–N3 active sites. This catalyst exhibits enhanced NRR activity with NH3 production (34.83 μg·h–1·mg–1cat.), faradaic efficiency (9.28% at −0.2 V vs RHE), selectivity, and stability in 0.1 M KOH aqueous media under mild conditions. Experimental and theoretical results both reveal that Fe–N3 species are the primary catalytically active centers for the NRR. This work provides insight into precise construction of more efficient and stable NRR electrocatalysts and further expands the possibilities of transition metal–nitrogen–carbon (M–N–C)-based nanomaterials in NRR fields.
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