4.7 Article

Ag-decorated highly mesoporous Co3O4 nanosheets on nickel foam as an efficient free-standing cathode for Li-O2 batteries

期刊

JOURNAL OF ALLOYS AND COMPOUNDS
卷 726, 期 -, 页码 939-946

出版社

ELSEVIER SCIENCE SA
DOI: 10.1016/j.jallcom.2017.07.276

关键词

Li-O-2 batteries; Ag/M-Co3O4/NF; Highly mesoporous; Free-standing

资金

  1. National Natural Science Foundation of China [51374056, 51404055, 51571054, 51674068]
  2. Natural Science Foundation of Hebei Province [E2014501143, B20155010205]
  3. Special Fund for Basic Scientific Research of Central Colleges, Northeastern University [N142304001, N142304002]
  4. Qinhuangdao Technology Bureau [201501B015]
  5. Training Foundation for Scientific Research of Talents Project, Hebei Province [A2016005004]

向作者/读者索取更多资源

Highly mesoporous cobalt oxide nanosheets are grown on nickel foam (M-Co3O4/NF) by a hydrothermal method. Ag nanoparticles with 10-50 nm diameters are uniformly distributed on the surface of the mesoporous Co3O4 nanosheets (Ag/M-Co3O4/NF) after chemical bath reaction. Moreover, we discovered that the homogeneous distribution of Ag nanoparticles on free-standing, highly mesoporous Co3O4 nanosheets showed the synergistic effect of the high electrocatalyst reactions toward the ORR from Ag and OER from M-Co3O4. Highly mesoporous Co3O4 nanosheets with a thickness of 10 nm as free-standing cathode for Li-O-2 battery are beneficial to accommodating insoluble discharge products and facilitating oxygen diffusion and electrolyte impregnation. Ag nanoparticles can improve the electrical conductivity of the O-2 electrode and provide a catalytic activity for ORR at the same time. The Ag/M-Co3O4/NF exhibited a robust catalytic activity as cathode for Li-O-2 batteries with a high reversible capacity of 2471.1 mA h g(-1), a low discharge/charge overpotential, and a cycle life of 124 cycles (under the curtaining capacity of 500 mA h g(-1)). The preliminary results indicate that Ag/M-Co3O4/NF is an efficient and stable bifunctional cathode for Li-O-2 batteries. (C) 2017 Elsevier B.V. All rights reserved.

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