Area of research
Mechanical Engineering · Computational Mechanics
Research interest
Research interests include Materials science, Electrolyte, Electrode, Flow battery, Vanadium, and Heat transfer.
Enhancement effects of variable gradient channel on output performance of fuel cells
Optimization of microporous layer perforation design for enhanced liquid water management in PEM fuel cells
A gradient electrospinning electrode structure both in the in/through-plane directions for non-aqueous iron-vanadium redox flow battery
Potential correlation between thermal transport and catalytic performance in single metal atom catalysts: A machine-learning interatomic potential and density functional theory study
A thermal management strategy for electronic devices based on copper double skin inspired hydrogel
Numerical study of a hybrid thermal lattice Boltzmann method for pool boiling heat transfer on a modeled hydrophilic metal foam surface
Accelerating Metal–Organic Framework Selection for Type III Porous Liquids by Synergizing Machine Learning and Molecular Simulation
An electrospinning carbon nanofiber composite electrode with gradient porous structure for deep eutectic solvent electrolyte-based iron‑vanadium redox flow battery
Review of droplet dynamics and dropwise condensation enhancement: Theory, experiments and applications
A double-layer electrode for the negative side of deep eutectic solvent electrolyte-based vanadium-iron redox flow battery
A pore-scale study for reactive transport processes in double-layer gradient electrode as negative side of a deep eutectic solvent electrolyte-based vanadium-iron redox flow battery
Heat transfer study in solar collector with energy storage
Lattice Boltzmann model for complex transfer behaviors in porous electrode of all copper redox flow battery with deep eutectic solvent electrolyte