Keyphrases
2,5-bis(hydroxymethyl)furan
34%
5-Hydroxymethylfurfural (5-HMF)
34%
Acetal
34%
Aluminum Oxide
34%
Aragonite
34%
Atomically Dispersed
68%
Binding Interaction
34%
Catalyst Deactivation
34%
Catalyst Overcoating
34%
Catalyst Selectivity
85%
Catalyst Stability
85%
Catalytic Applications
34%
CO2 Hydrogenation
34%
Controlled Deposition
34%
Cu2+
34%
CuAl2O4
34%
Deactivation
25%
Facile Synthesis
34%
Heterogeneous Catalysis
34%
Heterogeneous Catalyst
58%
High Surface Area
35%
High Temperature
25%
Hydrogenolysis
34%
Hydrotalcite
34%
Improved Catalysts
68%
Improved Thermal Stability
34%
Interfacial Sites
34%
Kinetically Controlled
34%
Lignin
34%
Mesoporous
34%
Metal Oxide
51%
Nanostructures
34%
Niobia
34%
Niobic Acid
34%
Non-hydrolytic Sol-gel
34%
Overcoat
100%
Overcoating
68%
Oxide Deposition
34%
Oxides
40%
Pd Precatalyst
34%
Post-synthesis
42%
Protein Fragments
34%
Rutile
34%
SBA-15
42%
Selective Catalyst
34%
Selective Hydrogenation
34%
Sol-gel
77%
Supported Copper Catalyst
34%
Synthetic Control Method
23%
Zirconium Dioxide
34%
Chemistry
5-Hydroxymethylfurfural
34%
Acid Catalyst
17%
Alkylation
8%
Aluminum Oxide
34%
Atomic Layer Epitaxy
6%
Base
6%
Calcination
42%
Carbonyl Group
11%
Catalyst Deactivation
11%
Catalyst Regeneration
8%
catalyst stability
45%
Chelating Agent
6%
Chemical Industry
11%
Chemistry
45%
Condensation
6%
Copper Atom
22%
Enzymatic Hydrolysis
6%
Ethoxide
8%
formation
11%
Friedel-Crafts Alkylation
8%
Furan
34%
Furfural
15%
Heterogeneous Catalysis
22%
Heterogeneous Catalyst
34%
Hydrodeoxygenation
6%
Hydrogenation
41%
Hydrolysis Kinetics
6%
Lewis Acid
8%
Lewis acidity
8%
Meso Porosity
45%
Mesoporous Silica
6%
Metal Oxide
34%
Monolayers
8%
Nanomaterial
11%
Nanoparticle
11%
Niobium
8%
Nitrous Oxide
22%
Pore Size Distribution
8%
Pore Structure
8%
Porosity
6%
Powder X-Ray Diffractometry
11%
Silicon Dioxide
34%
Sintering
6%
Supported Metal Catalyst
6%
Surface Area
67%
Thermal Stability
34%
volatility
11%
X Ray Absorption Spectroscopy
22%
X Ray Photoemission Spectroscopy
8%
Xylose
17%
Material Science
Aluminum
6%
Aluminum Oxide
34%
Calcination
8%
Carbon Dioxide
20%
Catalysis
34%
Catalyst Deactivation
11%
Catalyst Regeneration
8%
Catalyst Selectivity
18%
Chemical Property
6%
Density
6%
Enzymatic Hydrolysis
13%
Heterogeneous Catalysis
22%
Hydrogenation
47%
Lignin
6%
Mesoporous Silica
6%
Metal Oxide
47%
Monolayers
8%
Nanoparticle
18%
Nanostructure
11%
Niobium
8%
Nuclear Magnetic Resonance
34%
Nucleation
34%
Oxide Compound
42%
Particle Growth
6%
Pore Size Distribution
8%
Pore Structure
8%
Powder X-Ray Diffraction
11%
Sintering
20%
Sol-Gel
41%
Surface (Surface Science)
64%
Surface Characterization
11%
Surface Structure
34%
Thermal Stability
41%
X-Ray Absorption Spectroscopy
22%
X-Ray Photoelectron Spectroscopy
8%
Zirconia
34%