双功能
材料科学
催化作用
异质结
化学工程
多孔性
碳纤维
兴奋剂
析氧
氧气
无机化学
复合数
电极
化学
复合材料
电化学
光电子学
有机化学
物理化学
工程类
作者
Yanwei Zhu,Lang Gan,Jianqiao Shi,Gen Huang,Hongmei Gao,Tao Li,Shuangyin Wang
标识
DOI:10.1016/j.cej.2021.133541
摘要
The structural design and atomic adjustment of the catalyst are the main factors that regulate the intrinsic electrocatalytic activity. Herein, we report a novel and facile strategy of synthesizing three-dimensional porous carbon network by polymer-assisted molding strategy. The porous carbon framework with Co-CoF2 and carbon nanotubes ([email protected]) was directly obtained by the calcination, in which Co-CoF2 heterojunctions uniformly dispersed in the interconnected holes. Benefiting from the special hierarchical porous morphology, the dual-function catalytic activity of Co-CoF2 heterojunctions and existence of Co-Nx species, the as-obtained [email protected] composites exhibit excellent performance in the oxygen evolution reaction (η = 300 [email protected] mA cm−2), as well as outstanding oxygen reduction reaction performance in alkaline medium (E1/2 = 0.852 V, vs RHE). Moreover, as an air electrode in Zn-air batteries (ZABs), [email protected] demonstrates a large peak power density of 184 mW cm−2 and superior long-term stability, which is much more stable than the one consisting of commercial Pt/C. This finding not only shows a simple composite design to achieve high-performance ZABs but also may stimulate the rapid development of 3D hierarchical porous electrocatalysts for advanced energy technologies.
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