Amorphous nickel-cobalt bimetal-organic framework nanosheets with crystalline motifs enable efficient oxygen evolution reaction: Ligands hybridization engineering

被引:1
|
作者
Yang Li [1 ]
Zhonggui Gao [2 ]
Huiming Bao [3 ]
Binghui Zhang [3 ]
Cong Wu [1 ]
Chunfu Huang [1 ]
Zilu Zhang [1 ]
Yunyun Xie [1 ]
Hai Wang [1 ,2 ,4 ]
机构
[1] College of Materials Science and Engineering, Guilin University of Technology
[2] College of Physics and Technology, Guangxi Normal University
[3] College of Civil Engineering and Architecture, Guilin University of Technology
[4] Fujian Provincial Key Laboratory of Electrochemical Energy Storage Materials, Fuzhou University
基金
中国国家自然科学基金;
关键词
D O I
暂无
中图分类号
TQ116.2 [氢气]; TQ426 [催化剂(触媒)]; TB383.1 [];
学科分类号
070205 ; 080501 ; 080502 ; 0817 ; 081705 ; 1406 ;
摘要
Development of high-efficiency and low-cost electrocatalyst for oxygen evolution reaction(OER) is very important for use at alkaline water electrolysis.Metal-organic frameworks(MOF) provide a rich platform for designing multi-functional materials due to their controllable composition and ultra-high surface area.Herein,we report our findings in the development of amorphous nickel-cobalt bimetal-organic framework nanosheets with crystalline motifs via a simple "ligands hybridization engineering" strategy.These complexes’ ligands contain inorganic ligands(H2O and NO3) and organic ones,hexamethylenetetramine(HMT).Further,we investigated a series of mixed-metal with multi-ligands materials as OER catalysts to explore their possible advantages and features.It is found that the Ni doping is an effective approach for optimizing the electronic configuration,changing lattice ordering degree,and thus enhancing activities of HMT-based electrocatalysts.Also,the crystalline-amorphous boundaries of various HMTbased electrocatalyst can be easily controlled by simply changing amounts of Ni-precursor added.As a result,the optimized ultrathin(Co,0.3 Ni)-HMT nanosheets can reach a current density of 10 mA cm-2at low overpotential of 330 mV with a small Tafel slope of 66 mV dec-1.Our findings show that the electronic structure changes induced by Ni doping,2 D nanosheet structure,and MOF frameworks with multiligands compositions play critical roles in the enhancement of the kinetically sluggish electrocatalytic OER.The present study emphasizes the importance of ligands and active metals via hybridization for exploring novel efficient electrocatalysts.
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页码:251 / 259
页数:9
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