Area of research
Materials Chemistry · Mechanical Engineering
Research interest
Research focused on Perovskite (structure) and Structural engineering, with related work in Oxygen evolution, Overpotential, Ballast. Notable publications include 'Manipulation of Electron Spins with Oxygen Vacancy on Amorphous/Crystalline Composite-Type Catalyst', 'Mono-coordinated metallocene ligands endow metal-organic frameworks with highly efficient oxygen evolution and urea electrolysis', and 'Research on the dynamic behaviour of the railway ballast assembly subject to the low loading condition based on a tridimensional DEM-FDM coupled approach'.
Synergistic Macroscopic–Microscopic Regulation: Dual Constraints of the Island Effect and Coffee‐Ring Effect in Printing Efficient Flexible Perovskite Photovoltaics
In‐Situ Polymer Framework Strategy Enabling Printable and Efficient Perovskite Solar Cells by Mitigating “Coffee Ring” Effect
Polymer modulated ink rheology and compatibility enables homogenized printing of a Spiro-OMeTAD transport layer for scalable and stable perovskite solar modules
Repairing humidity-induced interfacial degradation in quasi-2D perovskite solar cells printed in ambient air
Manipulation of Electron Spins with Oxygen Vacancy on Amorphous/Crystalline Composite-Type Catalyst
Mono-coordinated metallocene ligands endow metal-organic frameworks with highly efficient oxygen evolution and urea electrolysis
Continuum-based approach for modelling the flexural behaviour of plain concrete beam under high-cycle fatigue loads
Research on the dynamic behaviour of the railway ballast assembly subject to the low loading condition based on a tridimensional DEM-FDM coupled approach