析氧
材料科学
过电位
催化作用
钴
分解水
化学工程
制作
咪唑酯
电催化剂
金属有机骨架
纳米技术
电化学
电极
物理化学
有机化学
病理
吸附
工程类
化学
医学
冶金
光催化
替代医学
作者
Jian Zhou,Yibo Dou,Awu Zhou,Rui‐Mei Guo,Minjian Zhao,Jian‐Rong Li
标识
DOI:10.1002/aenm.201602643
摘要
The ever‐increasing demand for clean and renewable power sources has sparked intensive research on water splitting to produce hydrogen, in which the exploration of electrocatalysts is the central issue. Herein, a new strategy, metal–organic framework template‐directed fabrication of hierarchically structured Co 3 O 4 @X (X = Co 3 O 4 , CoS, C, and CoP) electrocatalysts for efficient oxygen evolution reaction (OER) is developed, where Co 3 O 4 @X are derived from cobalt carbonatehydroxide@zeolitic‐imidazolate‐framework‐67 (CCH@ZIF‐67). Unique hierarchical structure and synergistic effect of resulting catalysts endow abundant exposed active sites, facile ion diffusion path, and improved conductivity, being favorable for improving catalytic activity of them. Consequently, these derivatives Co 3 O 4 @X reveal highly efficient electrocatalytic performance with long‐term durability for the OER, much superior to previously reported cobalt‐based catalysts as well as the Ir/C catalyst. Particularly, Co 3 O 4 @CoP exhibits the highest electrocatalytic capability with the lower overpotential of 238 mV at the current density of 10 mA cm −2 . Furthermore, Co 3 O 4 @X can also efficiently catalyze other small molecules through electro‐oxidation reaction (e.g., glycerol, methanol, or ethanol). It is expected that the strategy presented here can be extended to the fabrication of other composite electrode materials with hierarchical structures for more efficient water splitting.
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