China
East China University of Technology
MXene membrane, electrochemical, U(VI) extraction, phosphoric acid
MXene membrane, electrochemical U(VI) extraction, self-supporting electrodes, phosphate functionalization
Magnetic composite, Thorium capture, Phosphonic acid ligand, Distillation-precipitation polymerization, core-shell structure
Magnetic composite, Thorium capture, Phosphonic acid ligand, Distillation-precipitation polymerization, Core-shell structure
CO2 reduction, Three-dimensional electrolysis system, Particle electrodes, Formate production.
Magnetic polymer microspheres, Uranium adsorption, Phosphonic acid ligand, Acid resistance, Core-shell structure
Magnetic nanocomposite, Selective extraction of thorium, Phosphonic acid ligand, Acid resistance, Core-shell structure
Ti3C2Tx MXene, Cd0.8Zn0.2S, Schottky heterojunction, Photocatalytic, Uranium
Ti3C2Tx, Cd0.8Zn0.2S, Schottky heterojunction, Photocatalytic, Uranium
MXene, uranium electrochemical removal, square wave exchange method, molybdenum disulfide
MXene, Polyphosphazene, Square-wave exchange method, Uranium extraction.
Magnetic composite, Uranium capture, Amidoxime, Distillation-precipitation polymerization, core-shell structure
uranium (VI), adsorption, carbon microspheres, zinc oxide
Uranium extraction, real low-concentration uranium-containing wastewater, the flexibility, polymer chain, magnetic polymer nanocomposite
MXene membrane, electrochemical, uranium(VI) extraction, amidoxime
CO2 reduction, Three-dimensional electrolysis system, Particle electrodes, Formate production