Solar Energy–Based EV Charging: A Pilot and Techno-Economic Study

Press Release – Solar Energy–Based EV Charging: A Pilot and Techno-Economic Study

Charging up for Electric Mobility

Indian Rare Earth Industry: Need and Opportunity for Revival and Growth

Preparation, Structure Study and Electrochemistry of Layered H2V3O8 Materials: High Capacity Lithium-Ion Battery Cathode

Rechargeable Sodium-ion Battery: High Capacity Ammonium Vanadate Cathode with Enhanced Stability at High Rate

Mechanism of Charge Transfer in Olivine-Type LiFeSiO4 and LiFe0.5M0.5SiO4 (M = Mg or Al) Cathode Materials: First-Principles Analysis

Tuning electrochemical potential of LiCoO2 with cation substitution: first principles predictions and electronic origin

Electrochemical potentials of layered oxide and olivine phosphate with aluminum substitution: A first principles study

Lithium-ion battery supply chain: enabling national electric vehicle and renewables targets

A neural network based approach to predict high-voltage Li-ion battery cathode materials

Design and development of efficient bi-functional catalyst by tuning the electronic properties of cobalt-manganese tungstate for oxygen reduction and evolution reaction

Transition to All-Electric Public Transportation: Energy Resource Assessment

Implementation Plan for Electrification of Public Bus Transport in Bengaluru

Techno-Economic Analysis of Stand-alone Solar PV and Battery-based Micro-grids in Karnataka

Bandgap engineering of polymer electrolytes: A simulation based study

Origins of electrochemical performance of olivine phosphate as cathodes in Li-ion batteries: Charge transfer, spin-state, and structural distortion

Phase transition, electrochemistry, and structural studies of high rate Lix V3O8 cathode with nanoplate morphology

Study of Olivine Phosphates as cathodes for lithium ion batteries

Electric vehicles have the potential to fuel India’s growth

Smart grid can help electric vehicles tick

Ab initio Simulations Of A Novel Sodium Superionic Conductor

Theoretical prediction of a highly conducting solid electrolyte for sodium batteries: Na10GeP2S12

Moving from Li to Na ion intercalation battery: electronic charge transfer mechanism in cathodes studied with ab-initio methods

Rechargeable Sodium-Ion Battery: High-Capacity Ammonium Vanadate Cathode with Enhanced Stability at High Rate