Material Science
Film
100%
Thin Films
96%
Yttria Stabilized Zirconia
30%
Metal-Organic Chemical Vapor Deposition
24%
Oxide Compound
24%
Zirconia
22%
Phase Composition
20%
X-Ray Diffraction
19%
Surface (Surface Science)
15%
Silicon
15%
Thermal Conductivity
15%
Film Thickness
11%
Hydrogenation
9%
Magnesium
9%
Nucleation
9%
Superlattice
9%
Thermoelectrics
9%
Protective Coating
9%
Scanning Electron Microscopy
9%
Density
8%
Glass Transition
8%
Pulsed Laser Deposition
8%
Oxidation Reaction
7%
Sapphire
7%
Solid Electrolyte
7%
Titanium Oxide
7%
Dehydrogenation
7%
Photocatalysis
7%
Transmission Electron Microscopy
7%
Cobalt(II,III) Oxide
7%
Single Crystal
7%
Yttrium Oxide
6%
Chemical Vapor Deposition
6%
Grain Boundaries
6%
Magnesium Oxide
6%
Anode
5%
Residual Stress
5%
Silicide
5%
Porous Ceramics
5%
Ceramic Substrate
5%
Annealing
5%
Dielectric Material
5%
Buffer Layer
5%
Keyphrases
Metal-organic Chemical Vapor Deposition (MOCVD)
59%
Yttria-stabilized Zirconia
26%
Pulse Injection
25%
Microstructure
23%
Epitaxial
22%
Toluene
21%
Heating Rate
21%
Epitaxial Thin Film
15%
Transport Properties
15%
In Situ
15%
Stabilized Zirconia
14%
YBa2Cu3O7
14%
Deposition Temperature
14%
X Ray Diffraction
13%
Zirconia Film
12%
Film Thickness
12%
Nanocalorimetry
12%
Thermal Conductivity
11%
Ultrathin
11%
CaZrO3
10%
Amorphous Crystallization
9%
Vapor Deposition
9%
Crystalline Si
9%
C-axis Orientation
9%
Pd2Si
9%
La2NiO4
9%
Nanostructures
9%
Si-based
8%
Structural Properties
8%
Heat Capacity
8%
Silicide Formation
8%
Glass Transition
8%
Pulsed Laser Deposition
8%
Well-defined
8%
SrTiO3
7%
Silica
7%
Eutectic Crystal
7%
Monocrystalline
7%
Si Layer
7%
Ybco
7%
Mg-Al
7%
Lamellae
7%
Protective Coatings
7%
Growth Rate
7%
Ethylbenzene
7%
Superlattices
7%
Fuel Cell Applications
7%
Scanning Electron Microscopy
7%
Order of Magnitude
6%
Ultrafast Heating
6%
Engineering
Thin Films
64%
Yttria-Stabilized Zirconia
21%
Heating Rate
19%
Eutectics
16%
Thermal Conductivity
14%
Metal Organic Chemical Vapor Deposition
14%
Thermoelectricity
12%
Deposited Film
11%
Solid Oxide Fuel Cells
10%
Superlattice
10%
Vapor Deposition
10%
Ray Diffraction
9%
Phase Composition
9%
Deposition Temperature
8%
Rate of Heating
8%
Heat Capacity
7%
Fuel Cell Applications
7%
Anisotropic
6%
Pulsed Laser
6%
Porous Substrate
6%
Intermediate Temperature
5%
Oxide Film
5%
Electrical Conductivity
5%
Chemical Vapor Deposition
5%
Oxygen Partial Pressure
5%