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Dr. Ramesh Kumar Petla
Dr. Ramesh Kumar Petla
Post doc in TUS
在 rs.tus.ac.jp 的电子邮件经过验证
标题
引用次数
引用次数
年份
Soybean (Glycine Max) Leaf Extract Based Green Synthesis of Palladium Nanoparticles
RK Petla, S Vivekanandhan, M Misra, AK Mohanty, N Satyanarayana
Scientific Research Publishing, 2011
2652011
High capacity and low cost spinel Fe3O4 for the Na-ion battery negative electrode materials
PR Kumar, YH Jung, KK Bharathi, CH Lim, DK Kim
Electrochimica Acta 146, 503-510, 2014
1592014
Nanofibers: effective generation by electrospinning and their applications
P Ramesh Kumar, N Khan, S Vivekanandhan, N Satyanarayana, ...
Journal of nanoscience and nanotechnology 12 (1), 1-25, 2012
1402012
Na3V2O2x(PO4)2F3−2x: A stable and high-voltage cathode material for aqueous sodium-ion batteries with high energy density
DKK P. Ramesh Kumar, Young Hwa Jung, Chek Hai Lim
Journal of Materials Chemistry A 3, 6271-6275, 2015
1232015
Investigations into machining of composites
S Tandon, VK Jain, P Kumar, KP Rajurkar
Precision engineering 12 (4), 227-238, 1990
1101990
Na3V2O2(PO4)2F-MWCNT nanocomposites as a stable and high rate cathode for aqueous and non-aqueous sodium-ion batteries
DKK P. Ramesh Kumar, Young Hwa Jung, Ji Eun Wang
Journal of Power Sources 324, 421-427, 2016
992016
Carbon coated LiMnPO4 nanorods for lithium batteries
PR Kumar, M Venkateswarlu, M Misra, AK Mohanty, N Satyanarayana
Journal of the Electrochemical Society 158 (3), A227, 2011
922011
Enhanced properties of porous CoFe2O4–reduced graphene oxide composites with alginate binders for Li-ion battery applications
DKKANG P. Ramesh Kumar, Pratap Kollu, Chella Santhosh, K. Eswara Varaprasada Rao
New journal of chemistry 38, 3654--3661, 2014
822014
Nickel ferrite as a stable, high capacity and high rate anode for Li-ion battery applications
PR Kumar, S Mitra
RSC Advances 3 (47), 25058-25064, 2013
822013
Na4MnV (PO4) 3-rGO as Advanced cathode for aqueous and non-aqueous sodium ion batteries
PR Kumar, A Kheireddine, U Nisar, RA Shakoor, R Essehli, R Amin, ...
Journal of Power Sources 429, 149-155, 2019
812019
Sodium intercalation/de-intercalation mechanism in Na4MnV (PO4) 3 cathode materials
U Nisar, RA Shakoor, R Essehli, R Amin, B Orayech, Z Ahmad, PR Kumar, ...
Electrochimica Acta 292, 98-106, 2018
682018
Understanding the Origin of the Ultrahigh Rate Performance of a SiO2-Modified LiNi0.5Mn1.5O4 Cathode for Lithium-Ion Batteries
U Nisar, SAJA Al-Hail, RK Petla, RA Shakoor, R Essehli, R Kahraman, ...
ACS Applied Energy Materials 2 (10), 7263-7271, 2019
602019
Research advances on cobalt-free cathodes for Li-ion batteries - The high voltage LiMn1.5Ni0.5O4 as an example
R. Amin, N. Muralidharan, Ramesh K. Petla, H. B. Yahia, Sara Ahmad Jassim, R ...
Journal of Power sources 467, 228318, 2020
592020
Electrochemical properties of spinel cobalt ferrite nanoparticles with sodium alginate as interactive binder
S Mitra, PS Veluri, A Chakraborthy, RK Petla
ChemElectroChem 1 (6), 1068-1074, 2014
592014
Rapid microwave assisted hydrothermal synthesis of porous α-Fe 2 O 3 nanostructures as stable and high capacity negative electrode for lithium and sodium ion batteries
BN Rao, PR Kumar, O Padmaraj, M Venkateswarlu, N Satyanarayana
RSC Advances 5 (44), 34761-34768, 2015
562015
Effect of Electrolyte Additives on NaTi2(PO4)3-C//Na3V2O2X(PO4)2F3-2X-MWCNT Aqueous Rechargeable Sodium Ion Battery Performance
DKK P. Ramesh Kumar, Young Hwa Jung, Brindha Moorthy
Journal of The Electrochemical Society, 163 (7), A1484-A1492, 2016
512016
Active material and interphase structures governing performance in sodium and potassium ion batteries
EJ Kim, PR Kumar, ZT Gossage, K Kubota, T Hosaka, R Tatara, ...
Chemical Science 13 (21), 6121-6158, 2022
492022
A high capacity MnFe 2 O 4/rGO nanocomposite for Li and Na-ion battery applications
P Kollu, PR Kumar, C Santosh, DK Kim, AN Grace
RSC advances 5 (78), 63304-63310, 2015
452015
High performance of MoS2 microflowers with a water-based binder as an anode for Na-ion batteries
YHJDKK P. Ramesh Kumar
RSC Advances 5, 79845-79851, 2015
422015
Fast and Facile Synthesis of LiMn2O4 Nanorods for Li Ion Battery by Microwave Assisted Hydrothermal and Solid State Reaction Methods
NS BN Rao, P.Muralidhran, P.Ramesh Kumar, M
International Journal of ELECTROCHEMICAL SCIENCE 9 (3), 1207-1220, 2014
402014
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