Keyphrases
Single-crystalline
100%
Microcubes
60%
Hydrothermally
56%
Catalytic Performance
50%
Toluene
46%
Nanorods
40%
Complete Oxidation
40%
Oxygen Nonstoichiometry
31%
Mn4+
26%
Consumption Rate
26%
Toluene Oxidation
26%
Low Temperature
26%
Perovskite
25%
Analytical Techniques
24%
Combustion
23%
High Surface Area
23%
Excellent Performance
23%
Cubic Perovskite
23%
Catalytic Activity
21%
Ethyl Acetate
20%
Methane Combustion
20%
Solution Path
20%
Hydrothermal Treatment Temperature
20%
SBA-15 Catalyst
20%
Hydrothermally Synthesized
20%
Lanthanum Manganite
20%
Template-free Synthesis
20%
LaCoO3
20%
La1-xSrxMnO3
20%
Toluene Catalytic Combustion
20%
Mesoporous
20%
Nanowires
20%
Perovskite Oxide
20%
Cu2+
20%
In Situ
20%
Toluene Combustion
20%
Catalytic Properties
20%
High Activity
20%
Lanthanum Hydroxide
20%
Low-temperature Reducibility
20%
La0.6Sr0.4CoO3
20%
Strontium
20%
Highly Active
20%
Mn3+
20%
Crystalline Structure
19%
SBA-15
16%
H2 Consumption
16%
La(OH)3 Nanorods
13%
Manganese Chloride
13%
Hydrothermal Treatment
13%
Potassium Permanganate
13%
Single Crystal Nanorods
13%
Toluene Conversion
13%
Oxides
11%
Oxygen Vacancy
11%
Cu3+
10%
High Catalytic Activity
10%
Cu +
10%
Perovskite Catalyst
10%
1-Propanol
6%
Low-cost Approach
6%
Solution-phase Process
6%
Crystalline Nanowires
6%
Solution Method
6%
Rare Earth Hydroxides
6%
Ratio Performance
6%
Rapid Cooling
6%
KOH Solution
6%
Strontium Nitrate
6%
Lanthanum Nitrate
6%
Catalyst Reducibility
6%
Formation Mechanism
6%
Heat Treatment Temperature
6%
Physicochemical Properties
6%
Surface Composition
6%
Calcination
6%
Temperature Rise
6%
Bulk Composition
6%
Template-free
6%
Mixed Solvent
6%
Rod-like
6%
Mild Reaction Conditions
6%
Hydrothermal Method
6%
Surface Enhancement
6%
Molar Ratio
6%
Methane Oxidation
5%
Methane Conversion
5%
Nonstoichiometric Oxygen
5%
Redox Couple
5%
Ultrasonic Treatment
5%
Citric Acid
5%
Material Science
Hydrothermal Synthesis
40%
Lanthanum
40%
Oxide Compound
40%
Nanorod
40%
Catalyst Activity
30%
Analytical Method
25%
Crystal Structure
25%
Surface (Surface Science)
20%
Oxidation Reaction
20%
Strontium
20%
Nanowire
20%
Oxygen Vacancy
10%
Crystalline Material
10%
Calcination
10%
Phase Composition
5%
Chemistry
Catalyst Activity
35%
Reducibility
30%
Hydrothermal Synthesis
25%
Crystal Structure
25%
Nanowire
20%
Meso Porosity
20%
Nanorod
20%
Ethyl Acetate
20%
Catalyst Property
20%
Catalytic Combustion
20%
Methane
20%
Strontium
20%
Lanthanum
20%
Oxygen Vacancy
15%
Crystalline Material
10%
Calcination
10%
Sol Gel Process
5%
Surface Area
5%
In Situ Methods
5%
Incipient Wetness Impregnation
5%
Citric Acid
5%