Area of research
Renewable Energy, Sustainability and the Environment · Electrical and Electronic Engineering
Research interest
Research focused on Catalysis and Oxygen evolution, with related work in Electrocatalyst, Overpotential, Cobalt. Notable publications include 'Spontaneous Weaving of Graphitic Carbon Networks Synthesized by Pyrolysis of ZIF‐67 Crystals', 'Low overpotential water oxidation at neutral pH catalyzed by a copper( ii ) porphyrin', and 'Designing Oxide Catalysts for Oxygen Electrocatalysis: Insights from Mechanism to Application'.
Deficiency of Kif15 impairing synaptic development leads to mood disorder in mice
Macrophage Membrane‐Coated Carbon Nanozymes for Targeted Drug Delivery and NIR‐Responsive Synergistic Therapy in Rheumatoid Arthritis
Electrocatalytic water oxidation with manganese phosphates
Designing Oxide Catalysts for Oxygen Electrocatalysis: Insights from Mechanism to Application
Achieving Efficient Electrocatalytic Oxygen Evolution in Acidic Media on Yttrium Ruthenate Pyrochlore through Cobalt Incorporation
Rational design of Ruddlesden–Popper perovskite electrocatalyst for oxygen reduction to hydrogen peroxide
Square-pyramidal Fe-N4 with defect-modulated O-coordination: Two-tier electronic structure fine-tuning for enhanced oxygen reduction
Perovskite oxide for emerging photo(electro)catalysis in energy and environment
Low overpotential water oxidation at neutral pH catalyzed by a copper(<scp>ii</scp>) porphyrin
Boosting hydrogen evolution by using covalent frameworks of fluorinated cobalt porphyrins supported on carbon nanotubes
Cycloaddition versus Cleavage of the C=S Bond of Isothiocyanates Promoted by Digallane Compounds with Noninnocent α‐Diimine Ligands
Spontaneous Weaving of Graphitic Carbon Networks Synthesized by Pyrolysis of ZIF‐67 Crystals