Keyphrases
Magnesium Titanate
73%
Xerogel
59%
Nanocrystalline
53%
Qandilite
50%
Karrooite
41%
Geikielite
41%
Nanometric
36%
Oxides
23%
Mg-Ti
23%
Hot Stage
23%
Nanocrystalline Phase
21%
MgO-TiO2
19%
Annealing
19%
XRPD Analysis
18%
Tialite
18%
Multicomponent Oxides
18%
X-ray Powder Diffractometry
18%
Mechanical Processing
18%
Nanometre
18%
Nanometric Systems
18%
High-temperature X-ray Diffraction (HT-XRD)
18%
In Situ
18%
Yttrium
18%
Mechanical Treatment
18%
Phase Mapping
18%
Rare Earth Metals
18%
Sol-gel Precursors
18%
Metastability
18%
Binary Oxide
18%
Stoichiometric Ratio
18%
Low Temperature
17%
Periclase
16%
Solid Solution
13%
Crystallite Size
12%
Sol-gel Co-precipitation
12%
Metastable Phases
12%
Equilibrium Phase Diagram
12%
Aluminum Oxide
12%
High Temperature
11%
Non-stoichiometric
10%
Rutile
10%
Surface Energy
9%
Ti-Mg
9%
Phase Evolution
9%
Increased Temperature
9%
Unary
9%
Rietveld Refinement
9%
Annealing Temperature
9%
Atomic Ratio
8%
Line Broadening Analysis
8%
Material Science
Nanocrystalline
100%
Titanate
79%
Magnesium
73%
Xerogels
63%
Oxide Compound
46%
Powder
40%
Magnesium Oxide
36%
Titanium Dioxide
33%
Thermal Expansion
21%
Yttrium
18%
Annealing
18%
Mechanical Processing
18%
Sol-Gel
18%
Zirconia
18%
Powder X-Ray Diffraction
18%
Metastability
18%
Crystallite Size
17%
Surface Energy
15%
Crystalline Material
15%
Rietveld Refinement
12%
Coprecipitation
12%
Anisotropy
12%
Solid Solution
10%
Refractory Material
6%
Aluminum Oxide
6%
Crystal Growth
6%
Single Crystal
6%
Aluminum
6%
Engineering
Nanocrystalline
62%
Titanate
55%
Xerogel
33%
Broadening
27%
Crystallite Size
24%
Constant Temperature
24%
Annealing Temperature
18%
Nanometre
18%
Mechanical Treatment
18%
Increasing Temperature
18%
Low-Temperature
15%
Energy Surface
14%
Solid Solution
12%
Phase Sequence
9%
Volume Ratio
9%
Heat Treatment
9%
Expansion Coefficient
9%
Coherent Structure
9%
Crystalline Phase
9%
Dielectrics
8%
Chemical Formula
6%
Vegards Law
6%
Monoclinic
6%
Point Analysis
6%
Linear Function
6%