Area of research
Electronic, Optical and Magnetic Materials · Condensed Matter Physics
Research interest
Research focused on Metamaterial and Metallofullerene, with related work in Combinatorial chemistry, Bridge (graph theory), Auxetics. Notable publications include 'Machine learning applied to the design and inspection of reinforced concrete bridges: Resilient methods and emerging applications', 'A programmable auxetic metamaterial with tunable crystal symmetry', and 'Geometric design classification of kirigami-inspired metastructures and metamaterials'.
Crystallographically programmed kirigami metamaterials
Bulk and surface Dirac states accompanied by two superconducting domes in FeSe-based superconductors
A programmable auxetic metamaterial with tunable crystal symmetry
Frontispiece: Structurally Defined Water‐Soluble Metallofullerene Derivatives towards Biomedical Applications
Structurally Defined Water‐Soluble Metallofullerene Derivatives towards Biomedical Applications
Structurally Defined Water‐Soluble Metallofullerene Derivatives towards Biomedical Applications
Machine learning applied to the design and inspection of reinforced concrete bridges: Resilient methods and emerging applications
Geometric design classification of kirigami-inspired metastructures and metamaterials
Coupling impacts of spray and rainfall on road visibility and vehicle speeds: a simulation-based analysis