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Facile synthesis of ternary MXene nanocomposites as an electrode for supercapacitive applications
被引:9
|作者:
Chavan, Rutuja A.
[1
]
Ulisso, Desta M.
[1
]
Rasal, Akash S.
[2
]
Chang, Jia Yaw
[2
]
Ghule, Anil Vithal
[1
]
机构:
[1] Shivaji Univ, Dept Chem, Green Nanotechnol Lab, Kolhapur 416004, Maharashtra, India
[2] Natl Taiwan Univ Sci & Technol, Dept Chem Engn, Taipei 106335, Taiwan
来源:
MATERIALS ADVANCES
|
2023年
/
4卷
/
12期
关键词:
TRANSITION-METAL CARBIDE;
2-DIMENSIONAL MATERIALS;
PERFORMANCE;
GRAPHENE;
NANOPARTICLES;
DEGRADATION;
CATALYST;
HYBRID;
D O I:
10.1039/d3ma00133d
中图分类号:
T [工业技术];
学科分类号:
08 ;
摘要:
Supercapacitors (SCs) are particularly appealing for building a new generation of energy storage devices considering their low cost and unique features. Thus, we present a facile and scalable approach to fabricate and engineer ternary composite electrodes composed of MXene and metal oxides (MnO2 and CuO) to develop supercapacitors with high gravimetric capacitances. Firstly, a series of CuO on FSSM (Flexible Stainless Steel Mesh) CuO@FSSM thin films were synthesized by SILAR, and subsequently, a MnO2/MXene composite (MMC) was deposited on the CuO@FSSM films by a simple cost-effective R-CBD method to synthesize CuO@MMC. The optimized CuO20@MMC ternary composite electrode showed a gravimetric capacitance of 924.16 F g(-1) at 2 mA cm(-2). Furthermore, this ternary composite electrode was employed in an asymmetric supercapacitor device (ASC) delivering 25.54 F g(-1) specific capacitance with a capacitance retention of 87.27% over 2000 cycles. Thus, this method and the results are promising to fabricate advanced electrode materials for high-performing supercapacitors combining MXene and metal oxides.
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页码:2659 / 2666
页数:8
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