Synthesis of 3D hierarchical porous Ni–Co layered double hydroxide/N-doped reduced graphene oxide composites for supercapacitor electrodes

In this work, three-dimensional porous Ni–Co layered double hydroxide nanosheets are vertically decorated on N-doped reduced graphene oxide via a simple one-step microwave-assisted hydrothermal process. The incorporated N-doped reduced graphene oxide brings the following advantages: firstly, the imp...

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Veröffentlicht in:Inorganic chemistry frontiers 2019-02, Vol.6 (2), p.407-416
Hauptverfasser: Wang, Wencong, Zhang, Ning, Ye, Ziran, Hong, Zhanglian, Zhi, Mingjia
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Sprache:eng
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Zusammenfassung:In this work, three-dimensional porous Ni–Co layered double hydroxide nanosheets are vertically decorated on N-doped reduced graphene oxide via a simple one-step microwave-assisted hydrothermal process. The incorporated N-doped reduced graphene oxide brings the following advantages: firstly, the improved hydrophilicity of the N-doped reduced graphene oxide offers more nucleation sites to grow layered double hydroxide nanosheets on its surface. Secondly, the addition of N-doped reduced graphene oxide can greatly enhance the conductivity and specific surface area of the composites, thus resulting in better capacitance performance and improved rate capability. This composite possesses a high specific capacitance of 1720 F g −1 at a current density of 3 A g −1 and retains 960 F g −1 at a high current density of 50 A g −1 . The asymmetric supercapacitor assembled by adopting the prepared composites as the positive electrode and activated carbon as the negative electrode achieves a high energy density of 31.2 W h kg −1 at the power density of 0.354 kW kg −1 and a good long-time cycling stability (83% retention over 10 000 cycles).
ISSN:2052-1553
2052-1545
2052-1553
DOI:10.1039/C8QI01132J