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High-performance asymmetric supercapacitor from nanostructured tin nickel sulfide (SnNi2S4) synthesized via microwave-assisted technique
被引:28
作者:
Chandrasekaran, Nivedhini Iswarya
[1
]
Muthukumar, Harshiny
[1
]
Sekar, Aiswarya Devi
[1
]
Pugazhendhi, Arivalagan
[2
]
Manickam, Matheswaran
[1
]
机构:
[1] Natl Inst Technol, Dept Chem Engn, Tiruchirappalli 620015, Tamil Nadu, India
[2] Ton Duc Thang Univ, Fac Environm & Labour Safety, Innovat Green Prod Synth & Renewable Environm Dev, Ho Chi Minh City, Vietnam
关键词:
SnNi2S4;
Supercapacitor;
Nanocomposites;
Galvanostatic charge-storage;
High energy density;
GRAPHITIC CARBON SHEETS;
COBALT-SULFIDE;
ELECTROCHEMICAL SYNTHESIS;
GREEN SYNTHESIS;
ENERGY;
NANOSHEETS;
ARRAYS;
FOAM;
COMPOSITES;
ELECTRODES;
D O I:
10.1016/j.molliq.2018.06.084
中图分类号:
O64 [物理化学(理论化学)、化学物理学];
学科分类号:
070304 ;
081704 ;
摘要:
The hierarchical SnNi2S4 (TNS) nanocomposite synthesized via a microwave-assisted technique has been demonstrated. Sulfidation of Ni-Sn acetate hydroxide with thioacetamide was conducted in the presence of alcohol to produce SnNi2S4 nanocomposites. The SnNi2S4 nanocomposites exhibited excellent physiochemical properties with superior electrochemical performances. Owing to the improved faradaic redox reaction, enhanced surface area and exceptional mass transfer nature, the nanocomposites displayed a better charge/discharge stability, high specific capacitance and long-term cycling life. Assembled asymmetric supercapacitor constructed with SnNi2S4 nanocomposites operating at the potential 1.401 V showed a high energy density and power density. The long-term cycle life with high capacitance retention would satiate the growing demand for energy-related devices. The unique SnNi2S4 nanocomposites not only express promising roles in energy storage but also stand for an unlimited capability of heterostructured materials. (C) 2018 Elsevier B.V. All rights reserved.
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页码:649 / 657
页数:9
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