Area of research
Renewable Energy, Sustainability and the Environment · Electrochemistry
Research interest
Research focused on Overpotential and Oxygen evolution, with related work in Redox, Persulfate, Reuse. Notable publications include 'Electrochemical surface reconstruction of Prussian blue-modified nickel sulfide to form iron-nickel bilayer hydroxyl oxides for efficient and stable oxygen evolution reaction...', 'Redox-active ligands enhance oxygen evolution reaction activity: Regulating the spin state of ferric ions and accelerating electron transfer', and 'Exploration of the mechanism of levofloxacin removal by N-doped-induced interfacial micro-electric field-activated persulfate'.
Machine learning-guided multi-objective optimization for selective lithium extraction and valuable metal reuse from spent lithium-ion batteries
Exploration of the mechanism of levofloxacin removal by N-doped-induced interfacial micro-electric field-activated persulfate
Electrochemical surface reconstruction of Prussian blue-modified nickel sulfide to form iron-nickel bilayer hydroxyl oxides for efficient and stable oxygen evolution reaction processes
Redox-active ligands enhance oxygen evolution reaction activity: Regulating the spin state of ferric ions and accelerating electron transfer