Area of research
Electrical and Electronic Engineering · Automotive Engineering
Research interest
Research focused on Solid oxide fuel cell and Anode, with related work in Syngas, Nanotechnology, Electrolyte. Notable publications include 'Flexible Zn– and Li–air batteries: recent advances, challenges, and future perspectives', 'Modeling of all porous solid oxide fuel cells', and 'Integration of Zn–Ag and Zn–Air Batteries: A Hybrid Battery with the Advantages of Both'.
Guideline of Dynamic Tunnel Structural Evolution for Durable Sodium‐Ion Oxide Cathodes
Multifunctional Tunnel Structural Interfacial Modulation Promises Fast-Charge and Long-Life Na-Layered Oxides
High Energy Density Heterostructured Sodium Layered Oxide Cathodes Enabled by Mechanical‐Chemical Coupling Effect
High Energy Density Heterostructured Sodium Layered Oxide Cathodes Enabled by Mechanical‐Chemical Coupling Effect
Thermal modelling of ethanol-fuelled Solid Oxide Fuel Cells
Modeling of all porous solid oxide fuel cells
Integration of Zn–Ag and Zn–Air Batteries: A Hybrid Battery with the Advantages of Both
Syngas/power cogeneration from proton conducting solid oxide fuel cells assisted by dry methane reforming: A thermal-electrochemical modelling study
Experimental and modeling study of high performance direct carbon solid oxide fuel cell with in situ catalytic steam-carbon gasification reaction
Performance improvement of a direct carbon solid oxide fuel cell through integrating an Otto heat engine
Modeling of all-porous solid oxide fuel cells with a focus on the electrolyte porosity design
Flexible Zn– and Li–air batteries: recent advances, challenges, and future perspectives
Performance improvement of a direct carbon solid oxide fuel cell system by combining with a Stirling cycle
A novel design of solid oxide electrolyser integrated with magnesium hydride bed for hydrogen generation and storage – A dynamic simulation study