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AuthorHameed, A. Shahul
AuthorReddy, M. V.
AuthorChen, Jeremiah L. T.
AuthorChowdar, B. V. R.
AuthorVittal, Jagadese J.
Available date2021-09-01T10:03:36Z
Publication Date2016
Publication NameACS Sustainable Chemistry and Engineering
ResourceScopus
URIhttp://dx.doi.org/10.1021/acssuschemeng.5b01211
URIhttp://hdl.handle.net/10576/22522
AbstractRGO/Sb2S3 nanocomposite has been investigated in this study as a dual anode material for Li- and Na-ion battery applications. The stibnite phase of Sb2S3, and its rGO composite have been obtained from a molecular complex, Sb(SCOPh)3 or its rGO mixture by solid state decomposition or hydrothermal treatment. The pristine sample consists of micron sized particles with rod-like morphology while the rGO composite is made of nanoparticles of Sb2S3 embedded in rGO sheets. Electrochemical lithium and sodium storage properties of the prepared materials have been investigated using galvanostatic cycling, cyclic voltammetry, and electrochemical impedance spectroscopy studies. The rGO composite demonstrates better lithium storage capacity than the pristine sample owing to enhanced conductivity. In addition, the rGO sheets act as a buffer for volume change during lithium/sodium cycling resulting in a better energy storage. 2016 American Chemical Society.
SponsorJ.J.V. thanks the Ministry of Education, Singapore, through NUS Tier 1 FRC grant (No. R143-000-562-112). M.V.R. would like to thank the National Research Foundation (NRF), Singapore, for the research Grant no. WBS:R-284-000-115-281.
Languageen
PublisherAmerican Chemical Society
SubjectAnodes
Buffer storage
Cyclic voltammetry
Electric batteries
Electrochemical impedance spectroscopy
Electrodes
Graphene
Ions
Lithium
Metal ions
Nanocomposites
Secondary batteries
Storage (materials)
Sulfide minerals
Anode material
Enhanced conductivity
Galvanostatic cycling
Hydrothermal treatments
Lithium storage capacity
Micron-sized particles
Sodium ion batteries
Solid-state decomposition
Lithium batteries
TitleRGO/Stibnite Nanocomposite as a Dual Anode for Lithium and Sodium Ion Batteries
TypeArticle
Pagination2479-2486
Issue Number5
Volume Number4
dc.accessType Abstract Only


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