Material Science
Perovskites
100%
Nanoparticle
95%
Thermal Stability
70%
Diamond
66%
Oxidation Reaction
66%
Metal-Organic Framework
50%
Catalyst Activity
48%
Flue Gas
38%
Solution
36%
Superlattice
33%
Hydrogel
33%
Reduced Graphene Oxide
33%
Capacitance
33%
Photovoltaics
33%
Single Crystal
33%
Alloying
33%
Biodegradation
33%
One-Pot Synthesis
33%
ZnO
33%
Platinum
33%
Mesoporous Organosilicas
33%
Adsorbent
33%
Thin Films
33%
Selective Oxidation
33%
Zirconia
33%
Self Assembly
33%
Yttrium
33%
Carbon Surface
33%
Desorption
21%
Hybrid Material
16%
Periodic Mesoporous Organosilicas
16%
Metal Surface
16%
Quinone
16%
X-Ray Diffraction
16%
Charge Carrier
13%
Supercapacitors
11%
Halide
11%
Supercritical Fluid
11%
Chemistry
Perovskites
66%
Methane
51%
Thermal Stability
51%
Nanoparticle
44%
Aqueous Solution
44%
Organic Cation
41%
Ethylene
40%
Metal Organic Framework
33%
One Pot Reaction
33%
Single Crystalline Solid
33%
Zirconia
33%
Yttrium
33%
Transport Property
33%
Glyceric Acid
33%
Alloying
33%
Hydrogenolysis
33%
Potassium Hydroxide
33%
Nanoporosity
33%
Amide
33%
Ambient Reaction Temperature
33%
Surface Chemistry
33%
Selective Oxidation
33%
Activated Carbon
33%
Surface Oxygen
33%
Propanediol
33%
Meso Porosity
33%
Desorption
21%
Chemical Stability
18%
Number
16%
Phenol
16%
Quinone
16%
Addition Reaction
16%
Hydrophilicity
16%
Carboxylic Acid
16%
X-Ray Diffraction
15%
Charge Carrier
13%
Optoelectronics
13%
Halide
11%
Transmission Electron Microscopy
11%
Coprecipitation
11%
Catalyst Property
11%
X-Ray Photoelectron Spectrum
11%
Cation
11%
Methylammonium
11%
Pluronic
11%
Porosity
10%
Keyphrases
Thermal Stability Factor
33%
Glycerol Hydrogenolysis
33%
Cu-ZnO
33%
Polymeric Ionic Liquids
33%
Template Approach
33%
Soft-templating
33%
Amides
33%
Direct Functionalization
33%
Pyridinium
33%
Diamond Nanoparticles
33%
CO2 Uptake Capacity
33%
Surface Oxygen Groups
33%
Glyceric Acid
33%
Glycerol Oxidation
33%
Tetraphenyladamantane
33%
Surface Capacitance
33%
CO2-CH4 Separation
33%
In Situ
33%
Emulsion
33%
2D Hybrid Perovskites
33%
KOH Activation
33%
Gas Upgrading
33%
Methylammonium
22%
Ethylammonium
22%
Metal-organic Frameworks (MOFs)
22%
Dienophiles
16%
Ambient Conditions
16%
Addition Reaction
16%
Phenol Ethers
16%
Carboxylic Acid Groups
16%
Hummer
16%
Hummer's Method
16%
Carbon Surface Chemistry
16%
Perovskite Semiconductors
16%
Carbon Surface
16%
Pt Metal
16%
Quinone Groups
16%
Ethylene Oxidation
16%
Electronic Noise
13%
1,2-Propanediol
12%
Large Cation
11%
High Encapsulation Efficiency
11%
2D Crystals
11%
Distortion Effect
11%
Zeolitic Imidazolate framework-67 (ZIF-67)
11%
CO2 Separation
11%
Well-defined
11%
Diamine Monomer
11%
Optoelectronic Behavior
11%
Diamond Core
11%