Material Science
Sol-Gel
100%
Silicon Dioxide
61%
Lithium
41%
Phase Composition
28%
Silicate
25%
Silica Gel
21%
Oxide Compound
20%
Tetraethyl Orthosilicate
20%
Film
19%
Enzymatic Hydrolysis
19%
Thin Films
17%
Zirconia
16%
Xerogel
13%
Nanocomposite
13%
Sodium
12%
Sol-Gel Processing
12%
Heat Treatment
11%
Density
10%
Nuclear Magnetic Resonance
10%
Aluminosilicate
9%
Glass Transition Temperature
9%
Aluminum Oxide
8%
Surface (Surface Science)
8%
Ionic Conductivity
8%
Composite Material
8%
X-Ray Diffraction
8%
Aluminum
7%
Scanning Electron Microscopy
7%
Corrosion
7%
Zirconium
6%
Proton-Exchange Membrane Fuel Cells
6%
Polyethylene Glycol
6%
Bismuth
6%
Glass Transition
5%
Dielectric Spectroscopy
5%
Nitride Compound
5%
Composite Membrane
5%
Titanium Dioxide
5%
Silicate Glass
5%
Corrosion Protection
5%
Nanostructure
5%
X Ray Diffraction Analysis
5%
Thermal Analysis
5%
Differential Scanning Calorimetry
5%
Keyphrases
Silica
48%
Sol-gel Process
44%
Melting Gels
37%
Sol-gel
36%
Silica Gel
24%
Tetraethyl Orthosilicate
21%
Lithium
16%
Room Temperature
16%
Sol-gel Processing
13%
Hydrolysis
13%
Low Temperature
12%
Viscosity
12%
Sol-gel Method
12%
Microstructure
12%
Nafion
11%
Heat Treatment
11%
Aluminum Oxide
10%
Silicate Gel
10%
Oxides
9%
Lithium Nitrate
9%
Sol-gel Glass
9%
Dimethyldiethoxysilane
9%
Lithium Silicate
9%
Lithium Aluminosilicate
9%
Ionic Conductivity
8%
Silicate
8%
Zirconia
8%
Methyltriethoxysilane
8%
Gel Coating
8%
Alkoxide
7%
Xerogel
7%
Crystallization
7%
Weight Loss
7%
Proton Exchange Membrane Fuel Cell (PEMFC)
7%
Dry Gel
7%
Aluminosilicate Gel
7%
Dielectric Constant
6%
Lithium Oxide
6%
Polyvinyl Acetate (PVAc)
6%
Phosphorus Pentoxide
6%
Organic-inorganic
6%
Mechanical Properties
6%
LiCoO2
6%
Nanostructures
6%
Hybrid Gel
6%
Phosphosilicate
6%
High Temperature
6%
Siloxane
6%
Hybrid Glass
5%
Hybrid Organic-inorganic
5%