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Coupling Bimetallic Oxides/Alloys and N-Doped Carbon Nanotubes as Tri-Functional Catalysts for Overall Water Splitting and Zinc-Air Batteries
被引:59
|作者:
Qin, Qing
[1
]
Li, Ping
[1
]
Chen, Lulu
[1
]
Liu, Xien
[1
]
机构:
[1] Qingdao Univ Sci & Technol, Coll Chem & Mol Engn, State Key Lab Base Ecochem Engn, Qingdao 266042, Peoples R China
关键词:
oxygen reduction reaction;
oxygen evolution reaction;
hydrogen evolution reaction;
zinc-air battery;
water splitting cell;
BIFUNCTIONAL CATHODE;
OXYGEN REDUCTION;
LITHIUM STORAGE;
EFFICIENT;
ELECTROCATALYSTS;
EVOLUTION;
HYDROGEN;
OXIDES;
PERFORMANCE;
FABRICATION;
D O I:
10.1021/acsami.8b15612
中图分类号:
TB3 [工程材料学];
学科分类号:
0805 ;
080502 ;
摘要:
An effectively multifunctional electrocatalyst is crucial for catalyzing the reactions occurred at electrodes in zinc-air batteries and water splitting cells, such as oxygen evolution reaction (OER), hydrogen evolution reaction (HER), and oxygen reduction reaction (ORR). Herein, two non-noble metal-based multifunctional electrocatalysts of N-doped carbon nanotubes NCNT/CoFeCoFe2O4 and NCNT/MnO(MnFe)(2)O-3 are prepared by a simple solvothermal procedure, followed by two-step annealing under the argon and ammonia atmosphere. The resultant electrocatalysts exhibit good trifunctional performances for HER, ORR, and OER. Notably, the NCNT/CoFeCoFe2O4 and NCNT/MnO(MnFe)(2)O-3 assembled zinc-air batteries exhibit high energy densities of 727 and 776 W h kg(Zn)(-1) at the current density of 20 mA cm(-2), respectively. Furthermore, the NCNT/CoFeCoFe2O4-based rechargeable zinc-air battery remains excellent durability after discharge-charge cycle testing for 22 h, comparable to the noble metal-based catalyst (Pt/C + IrO2)-assembled zinc-air battery. Furthermore, the NCNT/CoFeCoFe2O4 and NCNT/MnO(MnFe)(2)O-3-assembled water splitting cells need similar to 1.65 and 1.70 V, respectively, to deliver a current density of 10 mA cm(-2), lower than that of IrO2Pt/C (1.71 V) and present excellent durability under long-term electrolysis. This work provides a facile strategy to prepare highly active multiple functional electrocatalysts for energy conversion and storage.
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页码:39828 / 39838
页数:11
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