INIS
chemical vapor deposition
90%
gases
89%
growth
78%
sensors
77%
nitrogen dioxide
69%
irradiation
63%
kinetic energy
63%
synthesis
61%
atmospheric pressure
54%
oxygen
49%
detection
45%
stability
44%
nanomaterials
42%
ions
40%
applications
39%
ammonia
37%
oxygen ions
36%
carbon nanotubes
36%
purity
36%
morphology
36%
films
34%
orientation
32%
tungsten sulfides
31%
tungsten
31%
tin
31%
graphite
31%
hybrids
31%
x-ray photoelectron spectroscopy
30%
concentration
30%
catalysis
26%
surfaces
25%
nanostructures
22%
raman spectroscopy
22%
selenium
21%
substrates
21%
vacancies
21%
hydrogen
20%
sensitivity
18%
layers
16%
photoluminescence
15%
x-ray diffraction
15%
electron microscopy
15%
optical properties
15%
control
15%
carbonyls
15%
epoxides
15%
aloe
14%
design
12%
humidity
11%
architecture
10%
Material Science
Chemical Vapor Deposition
100%
Nanosheet
88%
Nitrogen Dioxide
73%
X-Ray Photoelectron Spectroscopy
50%
Carbon Nanotubes
47%
Film
42%
Nanocrystalline Material
31%
Thermal Stability
31%
Nanoparticle
31%
Crystalline Material
31%
Zinc Oxide Nanoparticles
31%
Heterojunction
31%
Scanning Electron Microscopy
28%
Tungsten
25%
Transmission Electron Microscopy
23%
ZnO
22%
Two-Dimensional Material
21%
Raman Spectroscopy
21%
Nanotubes
15%
X-Ray Diffraction
15%
Catalysis
15%
Tin
13%
Optical Property
10%
Electron Microscopy
10%
Photoluminescence
10%
Hydrogen Evolution
10%
Molybdenum
10%
Density
10%
Surface (Surface Science)
10%
Water Vapor
10%
Materials Property
10%
Keyphrases
Oxygen Ion Irradiation
31%
WSe2
31%
NH3 Gas
31%
Ultrasensitive Detection
31%
WS 2
31%
Three-dimensional Assembly
31%
WS2 Nanosheets
31%
Graphite Film
31%
Edge Sites
31%
Nanosheets
31%
Atmospheric Pressure Chemical Vapor Deposition (APCVD)
31%
Vertically Aligned
31%
Chemical Vapor Deposition Growth
31%
2H-phase
26%
Aloe Vera
21%
Sensor Design
21%
Gas Detection
15%
Vapor Detection
15%
Cassava Starch
15%
SnS2 Nanosheets
15%
SnSe2
15%
C. X-ray Photoelectron Spectroscopy
10%
Tungsten Film
10%
High Orientation
10%
Rapid Selenization
10%
Tungsten Diselenide
10%
Reaction Catalysis
10%
Active Sensing
10%
MoS2 Edges
10%
Electrical Transduction
10%
Chemiresistor
10%
Scanning Probe Methods
10%
Material Orientation
10%
Chemiresistive Response
10%
Ion Transmission
7%
Oxygen Groups
7%
Macroscopic Alignment
7%
Epoxide Group
7%
Macroscopic Structure
7%
Irradiation Parameters
7%
Dual Selectivity
7%
Structural Arrangement
7%
Response Stability
7%
NO2 Molecule
7%
Selenization
7%
High Resilience
7%
Stability Evaluation
7%
2H-WSe2
7%
WO3 Nanorods
7%
Excellent Response
7%