Технические дисциплины и материаловедение
Ions
100%
Nanotubes
91%
Irradiation
88%
Structural properties
58%
Heavy ions
53%
Nanostructures
51%
Membranes
39%
Polyethylene terephthalates
38%
Ion bombardment
33%
Radiation
30%
Crystal structure
30%
Annealing
29%
Optical properties
25%
Defects
25%
Helium
23%
Magnetic properties
22%
Phase transitions
21%
Swelling
20%
Phase composition
19%
Nanoparticles
19%
Doping (additives)
18%
Degradation
18%
Electrochemical deposition
18%
Nanowires
18%
Ionizing radiation
17%
Nanocomposites
15%
Scanning electron microscopy
15%
Temperature
14%
Electron irradiation
14%
Radiation damage
14%
X rays
14%
Crystal lattices
14%
X ray production
13%
Dosimetry
12%
Catalyst activity
12%
Oxides
12%
Gamma rays
12%
Composite membranes
12%
Copper
12%
Spectroscopy
12%
Hot Temperature
11%
Nickel
11%
Nitrophenols
11%
Lithium-ion batteries
11%
Electrons
10%
Thin films
10%
Nitrides
10%
Impurities
10%
Perovskite
9%
Химические соединения
Nanotube
63%
Ceramic
53%
Heavy Ion
44%
Ion
41%
Nanomaterial
29%
Annealing
26%
Resistance
25%
Dose
22%
Energy
19%
Crystal Structure
18%
Pore
17%
Optical Property
16%
Modification
15%
Strength
15%
Electrodeposition
15%
Magnetic Property
15%
Liquid Film
14%
Nanowire
13%
Nitride
11%
Surface
10%
Nanoparticle
10%
Composite Material
10%
Scanning Electron Microscopy
9%
Template Synthesis
9%
Nanocomposite
9%
Electron Irradiation
9%
Oxide
9%
Application
8%
Amorphous Material
8%
X-Ray Diffraction
8%
Doping Material
8%
Crystallite
7%
Distillation
6%
Beryllium Oxide
6%
Carborane
6%
Spectroscopy
6%
Electron Particle
6%
Anode
6%
Displacement
5%
Crystallinity
5%
Nucleon
5%
Crystalline Texture
5%
Catalyst Property
5%
Decomposition
5%
Photocatalytic Activity
5%
Magnetic Structure
5%
Физика и астрономия
nanotubes
45%
irradiation
41%
ions
38%
ceramics
36%
heavy ions
23%
fluence
20%
synthesis
20%
polyethylene terephthalate
18%
membranes
16%
defects
16%
dosage
15%
radiation
15%
radiation tolerance
14%
crystal structure
14%
phase transformations
13%
swelling
13%
porosity
13%
templates
12%
ion irradiation
12%
energy
12%
degradation
12%
x rays
12%
optical properties
11%
nanoparticles
11%
helium
10%
annealing
9%
copper
8%
diffraction
8%
scanning electron microscopy
8%
surface layers
8%
ionizing radiation
8%
radiation damage
8%
shielding
7%
nickel
6%
magnetic properties
6%
inclusions
6%
zinc
6%
lithium
6%
electrochemical synthesis
6%
gamma rays
6%
nanowires
6%
carborane
6%
temperature
6%
crystal lattices
5%
beryllium oxides
5%
spectroscopy
5%
delivery
5%
aluminum nitrides
5%
nanocomposites
5%