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Hierarchical nanostructured NiCo2O4 as an efficient bifunctional non-precious metal catalyst for rechargeable zinc-air batteries
被引:366
|作者:
Prabu, Moni
[1
]
Ketpang, Kriangsak
[1
]
Shanmugam, Sangaraju
[1
]
机构:
[1] Daegu Gyeongbuk Inst Sci & Technol DGIST, Dept Energy Syst Engn, Dalseong Gun 711873, Daegu, South Korea
来源:
关键词:
OXYGEN REDUCTION REACTION;
NICKEL-COBALT OXIDES;
LI-ION BATTERIES;
ELECTROCHEMICAL CAPACITORS;
EVOLUTION REACTIONS;
CATHODE CATALYSTS;
LI-O-2;
BATTERIES;
ELECTROCATALYSTS;
ELECTRODES;
PEROVSKITE;
D O I:
10.1039/c3nr05835b
中图分类号:
O6 [化学];
学科分类号:
0703 ;
摘要:
A nickel-doped cobalt oxide spinel structure is a promising non-precious metal electrocatalyst for oxygen evolution and oxygen reduction in rechargeable metal-air batteries and water electrolyzers operating with alkaline electrolytes. One dimensional NiCo2O4 (NCO) nanostructures were prepared by using a simple electrospinning technique with two different metal precursors (metal nitrate/PAN and metal acetylacetonate/PAN). The effect of precursor concentration on the morphologies was investigated. Single-phase, NCO with an average diameter of 100 nm, porous interconnected fibrous morphology was revealed by FESEM and FETEM analysis. The hierarchical nanostructured 1D-spinel NiCo2O4 materials showed a remarkable electrocatalytic activity towards oxygen reduction and evolution in an aqueous alkaline medium. The extraordinary bi-functional catalytic activity towards both ORR and OER was observed by the low over potential (0.84 V), which is better than that of noble metal catalysts [Pt/C (1.16 V), Ru/C (1.01 V) and Ir/C (0.92 V)], making them promising cathode materials for metal-air batteries. Furthermore, the rechargeable zinc-air battery with NCO-A(1) as a bifunctional electrocatalyst displays high activity and stability during battery discharge, charge, and cycling processes.
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页码:3173 / 3181
页数:9
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