High volumetric energy density annealed-MXene-nickel oxide/MXene asymmetric supercapacitor
A Ti 3 C 2 T x MXene electrode decorated with NiO nanosheets was synthesized by a facile and cost-effective hydrothermal method. The NiO nanosheets were grown and immobilized on the carbon-supported TiO 2 layer which was derived from Ti 3 C 2 T x -MXene during a thermal annealing process. An electro...
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Veröffentlicht in: | RSC advances 2017-01, Vol.7 (18), p.11000-11011 |
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Hauptverfasser: | , , , , |
Format: | Artikel |
Sprache: | eng |
Schlagworte: | |
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Zusammenfassung: | A Ti
3
C
2
T
x
MXene electrode decorated with NiO nanosheets was synthesized by a facile and cost-effective hydrothermal method. The NiO nanosheets were grown and immobilized on the carbon-supported TiO
2
layer which was derived from Ti
3
C
2
T
x
-MXene during a thermal annealing process. An electrode based on the NiO-grown derived-TiO
2
/C-Ti
3
C
2
T
x
-MXene nanocomposite (Ni-dMXNC) exhibited a remarkable maximum specific capacity of 92.0 mA h cm
−3
at 1 A g
−1
and 53.9 mA h cm
−3
at 10 A g
−1
. Furthermore, an asymmetric supercapacitor (ASC) device composed of Ni-dMXNC as the positive electrode and Ti
3
C
2
T
x
MXene as the negative electrode was demonstrated to be better with a high energy density of 1.04 × 10
−2
W h cm
−3
at a power density of 0.22 W cm
−3
, and cycling stability with 72.1% retention after 5000 cycles, compared to ASCs using previously reported Ti
3
C
2
T
x
MXene materials. The enhanced capacitive performance is attributed to the newly formed high-surface-area multilayers of the Ni-dMXNC architecture, the active surface of NiO layer, and a favourable synergetic behaviour of the Ti
3
C
2
T
x
MXene negative electrode. |
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ISSN: | 2046-2069 2046-2069 |
DOI: | 10.1039/c6ra27880a |