Area of research
Materials Chemistry · Renewable Energy, Sustainability and the Environment
Research interest
Research focused on Ferromagnetism and Catalysis, with related work in Monolayer, Oxygen evolution, Superconductivity. Notable publications include 'Scalable two-step annealing method for preparing ultra-high-density single-atom catalyst libraries', 'Chemically Exfoliated VSe 2 Monolayers with Room‐Temperature Ferromagnetism', and 'Ferromagnetic single-atom spin catalyst for boosting water splitting'.
Breaking Structural Instability and Orbital Symmetry Mismatch in <i>p</i>-Block Metal Monochalcogenides for CO<sub>2</sub> Electroreduction via Noninvasive van der Waals Doping
Polyketides with Cardioprotective Bioactivities from Sponge-Associated Fungus Aspergillus giganteus MA46-5
New Benzaldehyde Derivatives From the Soft Coral–Associated Epiphytic Fungus <i>Aspergillus</i> Sp. EGF 15‐0‐3
Beyond Conventional Charge Density Wave for Strongly Enhanced 2D Superconductivity in 1H‐TaS<sub>2</sub> Superlattices
Two new types of structures from soft coral-associated epiphytic fungus Aspergillus versicolor CGF9-1-2
Ferromagnetic single-atom spin catalyst for boosting water splitting
Degradation Chemistry and Kinetic Stabilization of Magnetic CrI<sub>3</sub>
Scalable two-step annealing method for preparing ultra-high-density single-atom catalyst libraries
Tuning the Spin Density of Cobalt Single-Atom Catalysts for Efficient Oxygen Evolution
Electrochemically Exfoliated Platinum Dichalcogenide Atomic Layers for High-Performance Air-Stable Infrared Photodetectors
Printable two-dimensional superconducting monolayers
Engineering Local and Global Structures of Single Co Atoms for a Superior Oxygen Reduction Reaction
Structural Phase Transition of Multilayer VSe<sub>2</sub>
Imprinting Ferromagnetism and Superconductivity in Single Atomic Layers of Molecular Superlattices
Chemically Exfoliated VSe<sub>2</sub> Monolayers with Room‐Temperature Ferromagnetism
Ultrahigh Infrared Photoresponse from Core–Shell Single‐Domain‐VO<sub>2</sub>/V<sub>2</sub>O<sub>5</sub> Heterostructure in Nanobeam