Engineering & Materials Science
Atomic layer deposition
100%
Nanoparticles
64%
Alumina
64%
Titanium
63%
Coatings
48%
Transmission electron microscopy
38%
X-Ray Emission Spectrometry
36%
Neutron activation analysis
31%
Heavy water
27%
Ozone
23%
Oxygen
22%
Aluminum
21%
Fourier transforms
18%
Rhodamine B
16%
Infrared radiation
16%
Photocatalytic activity
15%
High resolution transmission electron microscopy
15%
Purging
13%
Mass spectrometry
11%
X ray diffraction analysis
11%
Effluents
10%
Water
10%
Crystalline materials
9%
Irradiation
9%
Fluidized beds
9%
X ray diffraction
9%
Degradation
6%
Gases
5%
Monitoring
5%
Experiments
3%
Physics & Astronomy
atomic layer epitaxy
67%
titanium
54%
aluminum oxides
53%
nanoparticles
44%
coatings
43%
cycles
37%
transmission electron microscopy
30%
neutron activation analysis
24%
heavy water
23%
x rays
21%
ozone
20%
aluminum
19%
oxygen
16%
spectroscopy
14%
reactors
14%
purging
13%
effluents
12%
rhodamine
11%
water
10%
diffraction
9%
mass spectroscopy
9%
beds
8%
energy
8%
degradation
7%
irradiation
5%
products
5%
high resolution
5%
characterization
5%
gases
4%
Chemical Compounds
Atomic Layer Epitaxy
75%
Coating Agent
39%
Nanoparticle
32%
Energy Dispersive X-Ray Spectroscopy
26%
Neutron Activation Analysis
21%
TEM Image
20%
Ozone
18%
Liquid Film
18%
Deuterium(.)
16%
Dioxygen
13%
Time
13%
Fourier Transform Infrared Spectroscopy
10%
Oxide
10%
X-Ray Diffraction
9%
Rhodamine B
9%
Ultraviolet Irradiation
8%
Photocatalytic Activity
7%
Mass Spectrometry
6%
Gas
4%
Amount
3%