Engineering & Materials Science
Film growth
100%
Carbon films
98%
Vapors
56%
Hydrocarbons
56%
Electrons
31%
Toluene
25%
Benzene
25%
Carbon
23%
Crystalline materials
22%
Photoelectron spectroscopy
17%
Radiation
16%
Temperature programmed desorption
16%
Extreme ultraviolet lithography
15%
Surface reactions
15%
Monolayers
13%
Electron beams
12%
Graphene
12%
Desorption
12%
Molecules
10%
Adsorption
10%
Contamination
10%
Multilayers
10%
Pyrolysis
9%
Scattering
9%
Ions
9%
X rays
9%
Hot Temperature
5%
Temperature
4%
Mathematics
Hydrocarbons
80%
Carbon
79%
Cap
75%
Interaction
45%
Electron
27%
Desorption
27%
Model
20%
EUV Lithography
19%
Radiation
19%
Energy
18%
X-ray Spectroscopy
17%
Pyrolysis
14%
Electron Beam
14%
Graphene
13%
Reflectivity
13%
Adsorption
11%
Multilayer
11%
Contamination
10%
Mirror
10%
Excitation
9%
Coverage
8%
Cross section
8%
Molecules
8%
Scattering
8%
Range of data
5%
Physics & Astronomy
caps
66%
hydrocarbons
59%
vapors
47%
carbon
42%
interactions
25%
toluene
22%
benzene
20%
desorption
18%
dehydrogenation
13%
electron bombardment
13%
ion scattering
12%
radiation
11%
surface reactions
10%
x ray spectroscopy
10%
pyrolysis
10%
contamination
9%
energy
9%
electrons
8%
lithography
8%
photoelectron spectroscopy
8%
dissociation
8%
graphene
8%
adsorption
8%
electron beams
7%
mirrors
7%
reflectance
7%
temperature
6%
cross sections
6%
molecules
5%
excitation
5%
Chemical Compounds
Hydrocarbon
44%
Liquid Film
30%
Carbon Atom
29%
Surface
20%
Desorption
16%
Toluene
15%
Benzene
14%
Reflectivity
12%
Electron Beam
11%
Surface Reaction
10%
Adsorption Energy
10%
Photoelectron Spectroscopy
10%
Energy
9%
Dehydrogenation
9%
Multilayer
9%
Monolayer
7%
Dissociation
7%
Pyrolysis
7%
Pressure
6%
Electron Particle
5%
Ion
4%
Time
3%
Molecule
3%