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Support Effects in Gold Catalyzed Oxidation Reactions
Ewoud Jacob Jan de Boed
Sub Materials Chemistry and Catalysis
Materials Chemistry and Catalysis
Research output
:
Thesis
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Doctoral thesis 1 (Research UU / Graduation UU)
Overview
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Dive into the research topics of 'Support Effects in Gold Catalyzed Oxidation Reactions'. Together they form a unique fingerprint.
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Keyphrases
Catalytic Oxidation
100%
Oxidation Reaction
100%
Support Effect
100%
Gold-catalyzed
100%
Propylene Oxide
100%
Carboxylic Acids
66%
Isomerization
66%
Na +
50%
Epoxidation Reaction
50%
Epoxidation
50%
Silica
33%
Synergistic Effect
33%
Silica-titania
33%
Epoxides
33%
2,5-furandicarboxylic Acid
33%
Metal Oxide Support
33%
Lewis Acids
33%
Propanol
33%
Au@Ag Nanoparticles
33%
Propylene Epoxidation
33%
5-hydroxymethylfurfural Oxidation
33%
Liquid Phase
16%
Electronic Properties
16%
High Selectivity
16%
Adsorption
16%
Silica Support
16%
Lewis Acidity
16%
Alkenes
16%
Hydrogen Peroxide
16%
Low Density
16%
Bimetallic
16%
Monometallic
16%
Combustion
16%
Aqueous Phase
16%
Specific Surface Area
16%
Gold Nanoparticles
16%
Supported Gold
16%
Acetone
16%
Alkali
16%
Metal Oxide
16%
Gold Catalyst
16%
Surface Sites
16%
Surface OH Groups
16%
SiO2 Support
16%
Bimetallic Nanoparticles
16%
Au@Ag
16%
Ti4+
16%
Alkali Cations
16%
Propene Epoxidation
16%
Ti Sites
16%
Gold Deposition
16%
Selective Insertion
16%
Liquid Phase Epoxidation
16%
Isomerization Mechanism
16%
Ti Loading
16%
Two-step Oxidation
16%
Reducible Support
16%
Chemical Engineering
Propylene
100%
Nanoparticle
44%
Carboxylic Acid
44%
Olefin
11%
Hydrogen Peroxide
11%
Transition Metal
11%