RESEARCH DOMAIN

ELECTROCHEMICAL ENERGY CONVERSION

Developing advanced nanomaterials and interfacial electrochemical processes for sustainable, high-efficiency green hydrogen production and energy conversion systems.

Hydrogen Production

Water electrolysis in both acid and base electrolytes to produce hydrogen

Hydrogen production
  • —Development of Nanocatalysts for Water Splitting
  • —Development of Hydrogen Production Systems
  • —Electrodeposition/Sputter Deposition for Fabrication of Non-precious Catalysts

Fuel Cell

Power generation system that directly converts the chemical energy of fuels (H2) into electricity through electrochemical reactions

Fuel Cell
  • —Development of Nanocatalysts for Fuel Cell Reaction
  • —Electrodeposition/Sputter Deposition for Fabrication of Alloy Catalysts
  • —Proton Exchange Membrane Fuel Cell (PEMFC)
  • —Direct Methanol Fuel Cell (DMFC)

Electrochemical CO2 Conversion

Low-temperature conversion of carbon dioxide into hydrocarbon fuels using electrochemical technology

Electrochemical CO2 Conversion
  • —Development of Nanocatalysts CO2 Electroreduction
  • —Development of Fuel Production Systems
  • —Electrodeposition/Sputter Deposition for Fabrication of Non-precious Catalysts

Electrodeposition on 3D Nano Structure

Electrochemical fabrication of nanostructures for electronic and energy storage devices

Electrodeposition on 3D Nano Structure
  • —Metal Electro/Electroless Deposition
  • —For Electronic/Storage Devices
  • —Electrodeposition Chemistry
  • —Thin Film Fabrication and Characterization