P.O. Box 3001
Macau
University of Macau
Deep eutectic electrolyte, Solvation structure, Preferential growth of Zn (002) plane, Zn anode
deep eutectic electrolyte, solvation structure, preferential growth of Zn (002) plane, Zn anode
hollow Bi2SeO5 particles, H+/Zn2+ co-insertion mechanism, long cyclic life, "rocking chair" ZIBs
Zn anode, Solvation structure, Co-solvent electrolyte, Solid electrolyte interface
Hybrid supercapacitors, State of Health Estimation, P2D-CNN Framework, Degradation Mechanism
P non-metal doping, VS2, Surface charge redistribution, DFT Calculations, hydrogen evolution activity
carbon coating, Br doping, BiOCl, Insertion-conversion mechanism, full batteries
BiOIO3@Zn3(PO4)2·4H2O heterojunction, build-in electric field, conversion-type anode, fast ionic diffusion, "rocking-chair" zinc ion battery
Hollow Bi2Se3 particles, Polypyrrole coating, Structural stability, Fast charge transfer, Mg2+ and NH4+ storage
ZnNCN protective layer, high ionic conductivity, Zn anode, Zinc-ion batteries
Co-solvent electrolyte, Solvation structure, Solid electrolyte interface, Zn anode
Molten salt method, Doping engineering, Structural stability, LiMn2O4 cathode
Molecular dipole, C-H oxidation, CO2 reduction, High selectivity, Visible light
(Bi0.5Sb0.5)2Te3, carbon nanofiber, intercalation-type mechanism, high mass loading, aqueous ammonium-ion battery
Te/biochar composite, polyethylene glycol additive, storage mechanism change, long cycling life, NH4+ storage
Aqueous hybrid battery, NH4+ (de)intercalation, I−/I2 redox, Long cyclic life
S-doped MnOOH nanofiber, Zn2+ storage capability, fast charge transfer, enhanced structural stability, aqueous zinc-ion battery
Quaternary molten salt, Co doping, LiNi0.5Mn1.5O4, Adjustable disordered/ordered phase ratio, lithium ion batteries
commercial MnCO3, acid etching, in situ electrochemical activation, long-life cathode, aqueous zinc ion battery
K0.27MnO2 cathode, Co/Mg co-doping, Structural stability, Reaction Kinetics, Na-ion batteries
VOOH, PEDOT coating, Cathodes, Zinc-ion batteries
anhydrous eutectic electrolyte, suppressed parasitic reactions, solvation structure regulation, highly stable Zn anode
Vanadium redox flow battery, Electrode modification, Carbon etching, Sulfur doping, Long cycling life
K0.5MnO2@Na0.7MnO2 cathode, Electrochemically induced K+ doping, K+ supply source, Structural stability, Na-ion batteries