Hefei , 230031
China
Chinese Academy of Sciences (CAS) - Anhui Province Key Laboratory of Materials Physics and Technology
Degraded LiCoO2, upcycling, Li2SO4 coating, co-doping, high voltage
E-waste, CuAu bimetallic catalyst, Electro-Fenton, bisphenol A, degradation
N, P co-doped, ionic liquid, hydrogenation, rearrangement, Nickel
ADH@BC hybrid membrane, gold, recovery, selective, Regeneration
spent LiCoO2, potassium zinc hexacyanoferrate, metal recovery, selective electrosorption, chemical precipitation
Electrocatalytic nitrate reduction to ammonia, Three-type reactors, Membrane-electrode-assemblies system, Theoretical calculations, Operando ATR-IRRAS
spent LiCoO2, recycling, water-based deep eutectic solvent, lithium, cobalt
Silica, core-shell, nickel, hydrogenation, selectivity, vanillin
Spent lithium iron phosphate battery, Sonochemical delamination and delithiation, *OH radicals, Nano O2 bubbles
Electrochemical lithium extraction, N-doped carbon, LiFePO4, Li+ adsorption capacity, HCDI
Cobalt, N, P co-doped, selective hydrogenation, Aqueous-phase, Heterogeneous catalysts
melamine sponge, B, N co-doped carbon nanotubes, nickel nanoparticles, 2e- ORR, degradation of pollutant
proton-exchange membrane water electrolysis, iridium (Ir)-based materials, thinner membrane, degradation mechanism
Ru single atoms, Ru nanoclusters, PET, electrooxidation, Density functional theory
TTC-CTFs, precious metals, recovery, photo-enhanced, Reduction
PVP-Ni(OH)2, Electrocatalysis, lattice expansion, electronic structural modulation, PET upcycling
iridium-based catalysts, Oxygen evolution reaction, PEM water electrolysis, membrane electrode assembly
highly degraded, LiFePO4, direct regeneration, Uric acid, N-doped carbon coating
Asymmetric coordination, Single-atom catalysts, electrocatalytic nitrate reduction, Ammonia synthesis, nitrate-to-alanine upcycling