INIS
nanocrystals
100%
matrices
100%
silica
100%
glass
100%
sol-gel process
100%
electron paramagnetic resonance
100%
chromium oxides
100%
doped materials
62%
ions
37%
calcination
37%
superparamagnetism
37%
concentration
25%
range
25%
crystals
25%
x-ray diffraction
25%
silica gel
25%
environment
12%
low temperature
12%
size
12%
magnetic fields
12%
oxidation
12%
transmission electron microscopy
12%
liquids
12%
spectra
12%
nitrogen
12%
hysteresis
12%
temperature range
12%
anisotropy
12%
temperature range 0273-0400 k
12%
blocking
12%
line widths
12%
magnetometers
12%
squid devices
12%
magnetization
12%
ferromagnetism
12%
antiferromagnetism
12%
lande factor
12%
Keyphrases
Chromium Oxide
100%
Sol-gel
100%
Electron Paramagnetic Resonance
100%
Nanocrystalline
100%
Silica Glass
100%
Glass Matrix
100%
Nanocrystals
80%
Calcination
70%
Doped Silica
30%
Calcination Temperature
20%
Cr5+
20%
CrO3
20%
Superparamagnetic Iron Oxide Nanoparticles (SPIONs)
20%
High Temperature
10%
Low Temperature
10%
Magnetic Field
10%
Temperature Range
10%
Room Temperature
10%
Resonance Line
10%
Diffraction
10%
Silica Gel
10%
Doping Concentration
10%
SQUID Magnetometer
10%
Infrared Band
10%
X-band
10%
Sol-gel Process
10%
Transmission Electron Microscopy
10%
Ferromagnetism
10%
Magnetic Hysteresis
10%
Electron Microscopy Studies
10%
Antiferromagnetic
10%
X-ray Diffraction Study
10%
Non-magnetic
10%
Electron Paramagnetic Resonance Spectra
10%
Optical Band
10%
Liquid Nitrogen Temperature
10%
Antiferromagnetic Order
10%
Field Cooled Magnetization
10%
Blocking Temperature
10%
G-factor
10%
Cr6+ Ions
10%
Hysteresis Effect
10%
Superparamagnetic Effect
10%
Monolithic Silica Gel
10%
Thermal Dependence
10%
Zero-field Cooling
10%
Resonance Behavior
10%
Material Science
Sol-Gel
100%
Chromium
100%
Silicon Dioxide
100%
Nanocrystalline
100%
Oxide Compound
100%
Calcination
60%
Superparamagnetism
40%
Silica Gel
40%
Doping (Additives)
20%
Linewidth
20%
Ferromagnetism
20%
Transmission Electron Microscopy
20%
Magnetometer
20%
Chemistry
EPR Spectroscopy
100%
Chromium Oxide
100%
Silicon Dioxide
100%
Nanocrystalline Material
100%
Superparamagnetism
25%
Calcination Temperature
25%
formation
25%
Doping Material
12%
Antiferromagnetic
12%
Linewidth
12%
Ferromagnetism
12%
Ambient Reaction Temperature
12%
Transmission Electron Microscopy
12%
Magnetic Field
12%
Magnetic Hysteresis
12%
Calcination
12%