Area of research
Electrical and Electronic Engineering · Materials Chemistry
Research interest
Research interests include Advancements in Battery Materials, Machine Learning in Materials Science, Supercapacitor Materials and Fabrication, and Electrochemical sensors and biosensors.
Elemental Stability Rules for High Entropy Disordered Rocksalt Type Li‐Ion Battery Positive Electrodes
Aqueous Stability of Metallic Materials and Metal Oxides
Origin of enhanced disorder in high entropy rocksalt type Li-ion battery cathodes
Accelerated development of battery materials leveraging artificial intelligence and automation
A Predictive Framework for Discovering Organic Metal Halide Hybrids beyond Perovskites
The rise of high-entropy battery materials
Selective formation of metastable polymorphs in solid-state synthesis
Direct Lithium Extraction from α-Spodumene through Solid-State Reactions for Sustainable Li<sub>2</sub>CO<sub>3</sub> Production
Unraveling the Fast Ionic Conduction in NASICON‐Type Materials
Organic Ligand Engineering for Tailoring Electron–Phonon Coupling in 2D Hybrid Perovskites
High-entropy mechanism to boost ionic conductivity
Three-dimensional interconnected core–shell networks with Ni(Fe)OOH and M–N–C active species together as high-efficiency oxygen catalysts for rechargeable Zn–air batteries
Iron-embedded nitrogen doped carbon frameworks as robust catalyst for oxygen reduction reaction in microbial fuel cells
Dual-doped mesoporous carbon synthesized by a novel nanocasting method with superior catalytic activity for oxygen reduction
Advanced Ti‐Doped Fe<sub>2</sub>O<sub>3</sub>@PEDOT Core/Shell Anode for High‐Energy Asymmetric Supercapacitors
Valence‐Optimized Vanadium Oxide Supercapacitor Electrodes Exhibit Ultrahigh Capacitance and Super‐Long Cyclic Durability of 100 000 Cycles