Area of research
Materials Chemistry · Electrical and Electronic Engineering
Research interest
Research focused on Ceramic and Electrochemistry, with related work in Electrolyte, Faraday efficiency, Proton. Notable publications include 'Revitalizing interface in protonic ceramic cells by acid etch', 'Electrochemically Engineered, Highly Energy-Efficient Conversion of Ethane to Ethylene and Hydrogen below 550 °C in a Protonic Ceramic Electrochemical Cell', and 'An Unbalanced Battle in Excellence: Revealing Effect of Ni/Co Occupancy on Water Splitting and Oxygen Reduction Reactions in Triple‐Conducting Oxides for Protonic Ceramic...'.
Sintering protonic zirconate cells with enhanced electrolysis stability and Faradaic efficiency
Enhancing surface activity and durability in triple conducting electrode for protonic ceramic electrochemical cells
Orientation microscopy–assisted grain boundary analysis for protonic ceramic cell electrolytes
Dual-function protonic ceramic fuel cell for efficient natural gas conversion to power and chemicals
Improving Proton Conductivity by Navigating Proton Trapping in High Scandium-Doped Barium Zirconate Electrolytes
Revitalizing interface in protonic ceramic cells by acid etch
An Unbalanced Battle in Excellence: Revealing Effect of Ni/Co Occupancy on Water Splitting and Oxygen Reduction Reactions in Triple‐Conducting Oxides for Protonic Ceramic Electrochemical Cells
Electrochemically Engineered, Highly Energy-Efficient Conversion of Ethane to Ethylene and Hydrogen below 550 °C in a Protonic Ceramic Electrochemical Cell