Material Science
Metal-Organic Framework
100%
Hydrogen Peroxide
96%
Vanadate
75%
Carbon Dioxide
61%
Titanium Dioxide
57%
Desorption
53%
Metal Oxide
52%
Oxide Compound
47%
Composite Material
42%
Oxygen Vacancy
32%
Fenton
31%
Catalyst Activity
30%
Thermal Aging
28%
Vanadium
26%
Density
26%
Diamond
25%
Carbide
25%
Cathode
21%
Selective Catalytic Reduction
21%
Tungsten
20%
Porous Carbon
20%
Zirconia
20%
Electro-Oxidation
20%
Flue Gas
20%
Silicon Dioxide
20%
Spark Plasma Sintering
18%
Hydrophobicity
18%
Catalysis
18%
Nanoparticle
16%
Transition Metal
15%
Cerium
15%
Iron Oxide
15%
Oxide Surface
13%
Titanium
13%
Electron Transfer
13%
Aluminum Oxide
12%
Crystallite
11%
Catalyst Support
11%
Metal Surface
11%
Thermal Stability
10%
Cerium Oxide
10%
Polymer Particle
10%
Gallium
10%
Zinc Oxide
10%
Oxidative Degradation
10%
Shale Gas
10%
Metal Nanoparticle
10%
Antimony
10%
Cobalt
10%
Silicon
10%
Chemistry
Ammonia
80%
Hydrogen Peroxide
64%
Energy Barrier
56%
Sulfur Dioxide
54%
Phenol
51%
Titanium Dioxide
46%
Sulfate
45%
Metal Organic Framework
40%
Pyrolysis
38%
Density Functional Theory
36%
Rate-Determining Step
34%
Desorption
33%
Ammonium Sulfate
30%
Oxygen Vacancy
30%
Metal Oxide
30%
Carbon Dioxide
28%
Selective Catalytic Reduction
25%
Thermal Aging
20%
Rare Earth Element
20%
Reactive Oxygen Species
20%
UiO-66
19%
stability
18%
Benzene
17%
Flue Gas
16%
Hydrodeoxygenation
16%
formation
16%
Surface Area
16%
Hydrophobicity
16%
Cerium
15%
Pharmacokinetics
15%
Catalyst Property
14%
Metal-Organic Framework
13%
protonation
13%
Metal Ion
12%
EPR Spectroscopy
12%
acidity
12%
Ethyl Sulfide
11%
Porosity
10%
Lewis acidity
10%
Hydrogenolysis
10%
Sulfur Mustard
10%
Meso Porosity
10%
Vanadium
10%
C-H Bond Activation
10%
Metal Sulfides
10%
Bipyridine
10%
Titanium
10%
Oxidative Degradation
10%
Cytochrome P450
10%
Catalyst Activity
10%
Chemical Engineering
Hydrogen Peroxide
86%
Pyrolysis
76%
Phenol
70%
Titanium Dioxide
69%
Methanol Electrooxidation
50%
Pt Catalyst
42%
Ammonia-Selective Catalytic Reduction
40%
Desorption
38%
Metal-Organic Frameworks
33%
Nanoparticle
33%
Transition Metal
32%
Acidic Sites
30%
Rare Earth Element
27%
Commercial Catalyst
25%
Carbon Dioxide
25%
Rare Earth Metal
20%
Gas Streams
20%
Hydrodeoxygenation
16%
Fenton Reaction
16%
Dibenzothiophene
15%
Tungsten Carbide
15%
Iron Oxide
15%
Catalyst Surface
14%
Carbon Supported Pt
12%
Polymerization
10%
Fuel Cell Membrane
10%
TiO2 Support
10%
Adsorption Properties
10%
Hydrogenolysis
10%
Ethylene
10%
Carbon
10%
Thermal Catalysis
10%
Metal Complex
10%
Thermal Conductivity
10%
Ammonia Synthesis
10%
Lattice Oxygen
10%
Fenton System
10%
Removal Performance
10%
Metal Nanoparticle
10%
Silica
10%
C-H Bond Activation
10%
Time on Stream
9%
Phenol Degradation
8%
Textile Wastewater
7%
Methanol
7%
Metal Dispersion
6%
N2 Selectivity
6%
Titanium Oxide
6%
Mineralization Efficiency
5%
Catalyst Dosage
5%