KK
Kiran Preethi Kirubakaran
Mercor, VinES (presently VinFast Auto Ltd), SRM Institute of Science and Technology, Karunya Institute of Technology and Sciences, Mahindra and Mahindra Limited
About
Energy storage professional with 6+ years of experience in materials science, battery technology, failure analysis, R&D, electrochemistry, and product development. Proven track record of developing and commercializing high-performance batteries for electric vehicles.
Employment
-
VinES (presently VinFast Auto Ltd) Electrochemical Analysis Lead Engineer2023 - 2024
-
Mahindra and Mahindra Limited Manager - Energy systems2022 - 2023
-
Nordische Energy Systems Research Associate2022 - 2022
-
SRM Institute of Science and Technology Senior Research Fellow2019 - 2021
-
SRM Institute of Science and Technology Junior Research Fellow2017 - 2019
-
Mercor STEM Expert
Education
-
SRM Institute of Science and Technology PhD2018 - Present
-
Karunya Institute of Technology and Sciences M.Sc (Integrated)2012 - 2017
Projects & Funding
Projects & funding information is unavailable.
Publications (15)
- Sensitive mode investigations of lithium-ion cells with tavorite-type LiVXO4F (X = B, Si) as cathodes with stable cycling in low temperature operations Save
- Band-Gap Tuned Dilithium Terephthalate from Environmentally Hazardous Material for Sustainable Lithium Storage Systems with DFT Modelling Save
- Electrochemical studies on Na2FeP2O7 pyrophosphate enhanced with SWCNT as intercalation compounds for Na-ion batteries: An insight into sensitive mode operations Save
- One dimensional vanadium boron-oxyfluoride nanostructures for lithium storage systems Save
- Sodium ion intercalation and multi redox behavior of a Keggin type polyoxometalate during [PMo10V2O40]5− to [PMo10V2O40]27− as a cathode material for Na-ion rechargeable batteries Save
- Sustainable-inspired design of efficient organic electrodes for rechargeable sodium-ion batteries: Conversion of P-waste into E-wealth device Save
- Vanadium silicon-oxyfluoride nanowires for lithium storage systems: A perfect synergy for dynamic simple spot synthesis Save
- High energy density of multivalent glass‐ceramic cathodes for Li‐ion rechargeable cells and as an efficient photocatalyst for organic degradation Save
- High energy storage of Li-ions on keggin-type polyoxometalate as electrodes for rechargeable lithium batteries Save
- Enhanced Photocatalytic Degradation Activity of 2-D Graphitic Carbon Nitride-SnO₂ Nanohybrids. Save