United States
Dual-atom catalysts, electrocatalytic CO2 reduction, density functional theory
CO2 reduction reaction, Sulfur doping, Applied potential, Explicit water molecules, Single-atom catalyst
TpPa COFs, CO2 capture and separation, Synergistic effect, Functional group;Li
asymmetric coordination, two-dimensional transition-metal carbides and nitrides, single atom catalysts, electrocatalytic CO2 reduction reaction
hydrated vanadates, transition metal cations, catalytic effect, Zinc ion batteries, exchange current density
Strain engineering, V2O5/VN heterostructure, superior kinetics, extended cycle life, aqueous zinc-ion batteries
graphyne, Li doping, Gas-framework interaction, CO2/N2 adsorption and separation
electrochemical CO2 reduction, electron accumulation, multihole, active site, *COOH intermediates
Ca metal doping, Precise polarity regulation, Gas-framework interaction, CO2 adsorption and separation
Electrocatalytic CO2 reduction reaction, Single atom catalyst, Coordination environment, Electronic structure, negative potentials
Cu2O, Low-index facets, Eco-friendly synthesis, CO2RR, Ethylene
CO2RR, Dual-Atom Catalysts, Coordination environment, electronic structure
Iron-doped nickel nanoparticles, hexamethylenetetramine, nitrogen doped carbon, electrocatalytic CO2 reduction
Graphdiyne, Li doping, Gas-framework interaction, CO2/N2 adsorption and separation
ZnO nanosheets, Oxygen vacancy, Electrocatalytic CO2 reduction, Zn-CO2 battery
CO2 electroreduction, ZnO-Ag, work function, Charge equilibrium, Bridged adsorption