Experimentaland computational analysis of metal oxide nanomaterials for lithium-ion batteries

Author:

ArunaBharathi M.,Sushama M.,Venkateswara Rao K.,Vykunta Rao G.

Publisher

Elsevier BV

Subject

Materials Science (miscellaneous)

Reference25 articles.

1. Molenda, Matcrial Problems and Prospects or Li-ion Batteries for vehicles applications. World scientilic-2011.

2. M.M. Abou-Sckkina, Khaled M.Elsabawy, F.G. Elmetwaly, Narow Range of Y***. Dopings on LiM2,Mn,0 for promoting structural, Microstuctural and cathodic capacity features of LiMnO- spinel. PRL – 2010.

3. F.Espinosa-Mangana, L.Alvarez-contreras, O. Morales-Rivera, M.T. Ochoa-Lara, S.M. Loya-mancilla, A Aguilar-Eluguczabal, Electron energy-loss spectroscopy of LiMn04 LiMn16Tio«Os and LiMnisNio,504 Elsevier-2008.

4. Aruna Bharathi M, Venkateswara Rao K, .Sushama M “ Synthesis Characterization and Density Functional Study of LiMn1.5Ni0.5O4Electrode for Lithium ion Battery “ Journal of Nano Electronic Physics, Sumy State University, Ukraine Vol. 6 No 1, 01005(5pp) April, (2014)..

5. MohammadkazemFaraz, K.Venkateswara Rao and Y.Apana “Synthesis and Charecterization of LiMn1sNiosO4 Nanoparticles by Solution Combustion Method” ASP-2012.

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