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Ionic liquid-assisted hydrothermal synthesis of SnS nanoparticles:Electrode materials for lithium batteries, photoluminescence and photocatalytic activities
被引:0
|作者:
K.N.Manukumar
[1
]
G.Nagaraju
[1
]
Brij Kishore
[2
]
C.Madhu
[3
]
N.Munichandraiah
[2
]
机构:
[1] Department of Chemistry, Siddaganga Institute of Technology
[2] Department of Inorganic and Physical Chemistry, Indian Institute of Science
[3] Department of Physics, Siddaganga Institute of Technology
关键词:
Nanoparticles;
Lithium-ion batteries;
Ionic liquids;
Ionothermal;
D O I:
暂无
中图分类号:
TB383.1 [];
TM912 [蓄电池];
学科分类号:
070205 ;
080501 ;
0808 ;
1406 ;
摘要:
Tin mono-sulphide(Sn S) nanoparticles(Nps) have been successfully synthesised through ionic liquid assisted hydrothermal method using hydrated tin(II) chloride as a precursor, thiourea as sulphur source precursors using 2-Methoxy ethyl methyl imidazolium methane sulfonate ionic liquid as co-solvent. The Reitveld refinement on powder X-ray diffraction(PXRD) confirmed the presence of orthorhombic Sn S structure as major phase along with traces amount of Sn S2 and Sn2 S3. Diffuse reflectance spectrum studies revealed the energy band gap around 1.38 e V. TEM images confirmed the Sn S Nps with average particle size of 40 nm and HRTEM suggest good crystallinity. The electrochemical property for lithium storage behaviour shows an initial discharge capacity of 658 m Ah/g and it retains discharge capacity of 426 m Ah/g for 16 cycles, at current density 100 m A/g. The obtained results indicate that Sn S Nps to be one of the possible promising anode materials for next generation Lithium batteries. Photoluminescence study of Sn S Nps shows a strong green emission at 530 nm. Sn S Nps were also tested for the photocatalytic adsorption of methylene blue and Rhodamine B.
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页码:806 / 812
页数:7
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