Keyphrases
Electrochemical CO2 Reduction
100%
Value-added Products
100%
Copper-based
100%
CO2 Electrochemical Reduction
100%
Nanoarchitecture
100%
CO2 Reduction Reaction (CO2RR)
66%
Economically Feasible
33%
CO2 Emission Reduction
33%
Environmental Sustainability
33%
Pollutants
33%
Hydrocarbons
33%
Surface Chemistry
33%
CO2 Emissions
33%
High Molecular Weight
33%
Thermodynamics
33%
Reusability
33%
Multiple Approaches
33%
C1-C2
33%
Product-specific
33%
Useful Products
33%
Cu-based
33%
Environmentally Benign
33%
Electro-optical Characteristics
33%
Low Overpotential
33%
Cu-based Electrocatalyst
33%
Efficient Electrocatalyst
33%
New Researchers
33%
First-principles DFT
33%
Industrial Sources
33%
Cu-based Materials
33%
Advanced Information
33%
Domestic Sources
33%
CO2 Utilization Efficiency
33%
Polycrystalline Cu
33%
Chemistry
Carbon Dioxide Reduction
100%
Carbon Dioxide
100%
Electrochemical Reduction
75%
Carbon Dioxide Emission
50%
Electrocatalyst
50%
Structure
25%
First Principle
25%
Density Functional Theory
25%
Molecular Mass
25%
CO2 Conversion
25%
Surface Chemistry
25%
Chemical Engineering
Carbon Dioxide Reduction
100%
Electrochemical CO2 reduction
100%
CO2 Conversion
50%
Material Science
Carbon Dioxide
100%
Electrochemical Reaction
30%
Electrocatalysts
20%
Morphology
10%