Area of research
Electrical and Electronic Engineering · Renewable Energy, Sustainability and the Environment
Research interest
Research interests include Flow battery, Redox, Electrolyte, Battery (electricity), Chemistry, and Energy storage.
Sustainable recycling and regeneration of redox flow battery components
Facile spray-printing of hydrophobic and porous gas diffusion electrodes enabling prolonged electrochemical CO2 reduction to ethylene
Data-Driven Prediction of Li-Ion Battery Degradation Using Predicted Features
Capital cost evaluation of conventional and emerging redox flow batteries for grid storage applications
Recent progress on tungsten oxide-based materials for the hydrogen and oxygen evolution reactions
Future perspective on redox flow batteries: aqueous versus nonaqueous electrolytes
Emulating Spatial and Temporal Outputs From Fuel Cell and Battery Models: A Comparison of Deep Learning and Gaussian Process Models
Advanced Pd-based nanomaterials for electro-catalytic oxygen reduction in fuel cells: A review
A new aqueous all-organic flow battery with high cell voltage in acidic electrolytes
Redox characteristics of iron ions in different deep eutectic solvents
A deep eutectic solvent (DES) electrolyte-based vanadium-iron redox flow battery enabling higher specific capacity and improved thermal stability
Rechargeable organic–air redox flow batteries
Recent developments in organic redox flow batteries: A critical review
The effects of duty cycles on pulsed current electrodeposition of Zn Ni Al 2 O 3 composite on steel substrate: Microstructures, hardness and corrosion resistance
A mixed acid based vanadium–cerium redox flow battery with a zero-gap serpentine architecture