Технические дисциплины и материаловедение
Adsorption
30%
Alumina
39%
Aluminum oxide
31%
Carbon
100%
Carbon nanofibers
98%
Catalyst activity
26%
Catalysts
79%
Chemical analysis
15%
Chemical vapor deposition
18%
Chlorinated Hydrocarbons
59%
Coprecipitation
24%
Dechlorination
13%
Decomposition
69%
Disintegration
22%
Doping (additives)
12%
Electron microscopy
11%
Hydrocarbons
11%
Hydrogen
11%
Hydrogenolysis
14%
Impregnation
19%
Ions
11%
Melamine
13%
Metals
28%
Nanostructured materials
61%
Nanostructures
11%
Nickel
35%
Nitrates
12%
Nitrogen
31%
Oxidation
49%
Oxides
13%
Oxygen permeable membranes
15%
Palladium
26%
Paramagnetic resonance
12%
Photoluminescence spectroscopy
14%
Pyrolysis
17%
Raman spectroscopy
12%
Rhodium
25%
Scanning electron microscopy
19%
Solid solutions
21%
Specific surface area
30%
Spectroscopy
16%
Substrates
11%
Sulfonation
13%
Temperature
19%
Thermal aging
20%
Thermodynamic stability
12%
Transmission electron microscopy
18%
Trichloroethylene
15%
X ray diffraction analysis
19%
X ray photoelectron spectroscopy
18%
Химические соединения
1,2-dichlorobenzene
11%
1,2-dichloroethane
55%
Adsorption
16%
Alloy
58%
Carbon Atom
55%
Carbon Fiber
10%
Carbon Nanofibre
72%
Carbon Nanostructure
13%
Catalyst
42%
Catalyst Property
16%
Catalytic Pyrolysis
22%
Chemical Vapour Deposition
14%
Chlorohydrocarbon
13%
Coprecipitation
15%
Dechlorination
9%
Decomposition
62%
Diffusion
10%
Electron Microscopy
7%
EPR Spectroscopy
9%
Ethane
7%
Filament
26%
Hydrocarbon
9%
Hydrogenolysis
8%
Mechanical Alloying
6%
Melamine
11%
Metal
22%
Methane
6%
Mixture
13%
Nanomaterial
32%
Nickel Alloy
11%
Nitrate
8%
Nitrogen
22%
Oxidation Reaction
19%
Oxide
11%
Palladium
14%
Photoluminescence Spectroscopy
8%
Porosity
15%
Raman Spectroscopy
7%
Reaction Yield
9%
Scanning Electron Microscopy
8%
Secondary Structure
9%
Solid Solution
19%
Specific Surface Area
20%
Surface
10%
Thermal Aging
21%
Thermal Stability
8%
Transmission Electron Microscopy
7%
X-Ray Diffraction
9%
X-Ray Photoelectron Spectroscopy
7%
Физика и астрономия
acids
9%
adsorption
9%
aluminum oxides
6%
carbon
54%
catalysts
30%
catalytic activity
16%
ceramics
5%
characterization
9%
chlorobenzenes
5%
coal
17%
coatings
5%
coke
10%
cycles
6%
deactivation
6%
decomposition
30%
filaments
8%
gels
6%
hydrocarbons
11%
ignition
7%
iron
5%
matrices
5%
melamine
13%
metal oxides
7%
metals
9%
nanoparticles
5%
nickel
21%
nitrates
5%
nitrogen
8%
organizing
10%
oxidation
26%
oxides
9%
preparation
13%
pretreatment
8%
products
5%
pyrolysis
14%
Raman spectroscopy
5%
routes
13%
salts
7%
scanning electron microscopy
7%
solid solutions
7%
synthesis
25%
transmission electron microscopy
6%
x rays
7%