Area of research
Organic Chemistry · Electrical and Electronic Engineering
Research interest
Research interests include Chemistry, Catalysis, Coagulation, Alkene, Redox, and Photoredox catalysis.
Synergistic electrochemical catalysis by high-entropy metal phosphide in lithium–sulfur batteries
Enhancing sludge dewatering efficiency through bioleaching facilitated by increasing reactive oxygen species
Promoting dewatering efficiency of sludge by bioleaching coupling chemical flocculation
Synchronous Photooxidation–Coagulation for the Efficient Treatment of Algae-Laden Water by Utilizing Titanium Xerogel Coagulant
Photoredox-Enabled Chromium-Catalyzed Alkene Diacylations
Acetylacetone effectively controlled the secondary metabolites of Microcystis aeruginosa under simulated sunlight irradiation
Desymmetrization of 1,3-Diones by Catalytic Enantioselective Condensation with Hydrazine
Coagulation-ultrafiltration efficiency of polymeric Al-, Fe-, and Ti- coagulant with or without polyacrylamide composition
Low-Dose CaO<sub>2</sub> Enhanced Arsenite Coagulation via Elevating Solution pH and Persistently Oxidizing As(III) into As(V)
Stereoselective access to [5.5.0] and [4.4.1] bicyclic compounds through Pd-catalysed divergent higher-order cycloadditions
Chemoselective Union of Olefins, Organohalides, and Redox-Active Esters Enables Regioselective Alkene Dialkylation
Photoredox-Catalysis-Modulated, Nickel-Catalyzed Divergent Difunctionalization of Ethylene
Long UHMWPE fibers reinforced rigid polyurethane composites: An investigation in mechanical properties
A micromechanical model to study the closure stress effect on fatigue life of Ti6Al4V subjected to laser shock peening