A rationally designed dual role anode material for lithium-ion and sodium-ion batteries: case study of eco-friendly Fe 3 O 4 S Hariharan, K Saravanan, V Ramar, P Balaya Physical Chemistry Chemical Physics 15 (8), 2945-2953, 2013 | 194 | 2013 |
Li (Mn x Fe 1− x) PO 4/C (x= 0.5, 0.75 and 1) nanoplates for lithium storage application K Saravanan, V Ramar, P Balaya, JJ Vittal Journal of Materials Chemistry 21 (38), 14925-14935, 2011 | 114 | 2011 |
Enhancing the electrochemical kinetics of high voltage olivine LiMnPO 4 by isovalent co-doping V Ramar, P Balaya Physical Chemistry Chemical Physics 15 (40), 17240-17249, 2013 | 110 | 2013 |
Na2MnSiO4 as an attractive high capacity cathode material for sodium-ion battery M Law, V Ramar, P Balaya Journal of Power Sources 359, 277-284, 2017 | 81 | 2017 |
Heat loss distribution: Impedance and thermal loss analyses in LiFePO4/graphite 18650 electrochemical cell M Balasundaram, V Ramar, C Yap, L Li, AAO Tay, P Balaya Journal of Power Sources 328, 413-421, 2016 | 75 | 2016 |
Investigation of physico-chemical processes in lithium-ion batteries by deconvolution of electrochemical impedance spectra B Manikandan, V Ramar, C Yap, P Balaya Journal of Power Sources 361, 300-309, 2017 | 71 | 2017 |
The effect of synthesis parameters on the lithium storage performance of LiMnPO4/C V Ramar, K Saravanan, SR Gajjela, S Hariharan, P Balaya Electrochimica Acta 105, 496-505, 2013 | 58 | 2013 |
Synthesis, characterisation and enhanced electrochemical performance of nanostructured Na 2 FePO 4 F for sodium batteries M Law, V Ramar, P Balaya RSC Advances 5 (62), 50155-50164, 2015 | 56 | 2015 |
NASICON-type La3+ substituted LiZr2 (PO4) 3 with improved ionic conductivity as solid electrolyte V Ramar, S Kumar, SR Sivakkumar, P Balaya Electrochimica Acta 271, 120-126, 2018 | 51 | 2018 |
The effect of polymorphism on the lithium storage performance of Li2MnSiO4 V Ramar, P Balaya Journal of Power Sources 306, 552-558, 2016 | 28 | 2016 |
Developing a light weight lithium ion battery–an effective material and electrode design for high performance conversion anodes S Hariharan, V Ramar, SP Joshi, P Balaya RSC advances 3 (18), 6386-6394, 2013 | 25 | 2013 |
Key design considerations for synthesis of mesoporous α-Li3V2 (PO4) 3/C for high power lithium batteries HS Lee, V Ramar, S Kuppan, M Nagarathinam, M Law, C Wang, ... Electrochimica Acta 372, 137831, 2021 | 19 | 2021 |
Non-flammable inorganic liquid electrolyte lithium-ion batteries V Ramar, C Pszolla, M Rapp, M Borck, L Zinck Journal of The Electrochemical Society 167 (7), 070521, 2020 | 16 | 2020 |
Enhanced electrochemical performance of W incorporated VO2 nanocomposite cathode material for lithium battery application SAS Nizar, V Ramar, T Venkatesan, P Balaya, S Valiyaveettil Electrochimica Acta 282, 480-489, 2018 | 15 | 2018 |
Magnetic properties and vanadium oxidation state in α-Li3V2 (PO4) 3/C composite: Magnetization and ESR measurements TP Gavrilova, SM Khantimerov, RR Fatykhov, IV Yatsyk, MA Cherosov, ... Solid State Communications 323, 114108, 2021 | 10 | 2021 |
Nanostructured mesoporous materials for lithium-ion battery applications P Balaya, K Saravanan, S Hariharan, V Ramar, HS Lee, M Kuezma, ... Energy Harvesting and Storage: Materials, Devices, and Applications II 8035 …, 2011 | 7 | 2011 |
Infrared Spectroscopy of Li2MnSiO4: A cathode material for Li ion batteries M Pandey, V Ramar, P Balaya, RJ Kshirsagar AIP Conference Proceedings 1665 (1), 2015 | 4 | 2015 |
Defect-Enhanced Lithium Storage Performance of Nanostructured Mesoporous LiFePO4 for a High-Power Lithium-Ion Battery M Law, HS Lee, V Ramar, P Balaya Journal of The Electrochemical Society 171 (2), 020502, 2024 | 1 | 2024 |
Approach for manufacturing efficient mesoporous nano-composite positive electrode LiMn1-xFexPO4 materials P Balaya, V Ramar US Patent 9,385,367, 2016 | 1 | 2016 |
Nanostructured Olivine-based Cathode Materials for Lithium-ion Batteries V Ramar, P Balaya Mater. Matters. 11, 23, 2016 | 1 | 2016 |