Keyphrases
2,5-Diformylfuran
71%
One-pot Synthesis
57%
Fructose
57%
5-hydroxymethylfurfural Oxidation
42%
5-Hydroxymethylfurfural (5-HMF)
35%
Mechanism Study
28%
Catalytic System
28%
Cobalt-nitrogen-doped Carbon
28%
Catalytic Mechanism
28%
Oxidant-free
28%
Biomass-derived Alcohols
28%
Trace Water
28%
Chitosan
28%
Phosphomolybdic Acid
28%
2,5-furandicarboxylic Acid
28%
Nitrogen-doped Carbon Catalyst
28%
Bifunctional Catalyst
28%
Catalytic Oxidation
28%
Aldehydes
28%
Photocatalytic Oxidation
28%
Photocatalytic Selective Oxidation
28%
SnS2
28%
Polymetallic Catalysts
28%
CuCo2O4
28%
Biomass Conversion
20%
Valuable Chemicals
20%
Alcohol Oxidation Reaction
14%
Thermal Catalysis
14%
Photoenergy
14%
Bond Cleavage
14%
Activation Energy Barrier
14%
Alcohol
14%
Photocatalytic Conversion
14%
Low Carbon
14%
Catalytic Cycle
14%
Precision Tuning
14%
Energy Efficient
14%
Efficiency Improvement
14%
Catalyst Design
14%
Fine Chemicals
14%
Water Concentration
14%
Active Participants
14%
Utilization Rate
14%
Catalyst Deactivation
14%
Photocatalyst
14%
Photocatalytic Efficiency
14%
Reaction Efficiency
14%
Catalytic Performance
14%
Promising Strategies
14%
Fossil Fuels
14%
Acetonitrile
14%
Chemical Production
14%
Co-Nx
9%
Active Center
9%
Acid Production
9%
Furan Derivatives
5%
Effective Conversion
5%
Value-added Chemicals
5%
Catalytic Activity
5%
Reaction Conditions
5%
Catalytic Conversion
5%
Solvent Consumption
5%
Good Stability
5%
Bioresources
5%
Excellent Reusability
5%
Polymetallic Oxides
5%
Non-noble Metal Catalyst
5%
Chemistry
2,5-diformylfuran
100%
5-Hydroxymethylfurfural
68%
One Pot Reaction
57%
Fructose
57%
Oxidation Reaction
28%
Photocatalytic
28%
Bifunctional Catalyst
28%
Chitosan
28%
Photocatalytic Oxidation
28%
Reaction Activation Energy
14%
Catalyst Deactivation
14%
Catalyst Design
14%
Acetonitrile
14%
catalytic cycle
14%
Photocatalyst
14%
Energy Barrier
14%
Fossil Fuel
14%
stability
11%
Catalyst Activity
11%
Furan
5%
Catalytic Oxidation
5%
Calcination
5%
Crystal Structure
5%
Noble Metal
5%