材料科学
双功能
电催化剂
氮化物
三元运算
氮化钒
过渡金属
纳米颗粒
钴
石墨氮化碳
化学工程
催化作用
纳米技术
物理化学
电极
化学
冶金
生物化学
图层(电子)
计算机科学
工程类
电化学
程序设计语言
光催化
作者
Jinjin Ban,Hongjie Xu,Guoqin Cao,Yameng Fan,Wei Kong Pang,Guosheng Shao,Junhua Hu
标识
DOI:10.1002/adfm.202300623
摘要
Abstract Transition metal nitrides (TMNs) have great potential use in energy storage and conversion owing to tunable electronic and bonding characteristics. Novel iron rich nitrides nanoparticles anchored on the N‐doped porous carbon, named as (Co x Fe 1– x ) 3 N@NPC (0 ≤ x < 0.5) are designed here. The synergistic effects of phase transition and electron‐spin regulation on oxygen electrocatalysis are testified. A core–shell structure of (Co x Fe 1– x ) 3 N with high dispersibility is induced by an intermediate phase transition process, which significantly suppresses coarsening of the metallic nitrides. The Co incorporation regulates d‐band electrons spin polarization. The t 2g 5 e g 1 of Fe II with the ideal e g electron filling boosts intrinsic activity. (Co 0.17 Fe 0.83 ) 3 N@NPC with optimal cobalt content holds electronic configuration with moderate e g electron filling ( t 2g 5 e g 1 ), which balances the adsorption of *O 2 and the hydrogenation of *OH, improving bifunctional catalytic performances. Both liquid and solid‐state zinc–air batteries assembled based (Co 0.17 Fe 0.83 ) 3 N@NPC cathodes substantially deliver higher peak power density and remarkable energy density.
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