INIS
absorption
100%
layers
100%
ruthenium
100%
thin films
100%
solar cells
100%
films
36%
doped materials
36%
comparative evaluations
18%
modifications
18%
surfaces
18%
strains
9%
origin
9%
sprays
9%
substrates
9%
size
9%
density
9%
particles
9%
configuration
9%
crystal structure
9%
optical properties
9%
emission
9%
mobility
9%
adjustments
9%
devices
9%
dislocations
9%
durability
9%
semiconductor materials
9%
pyrolysis
9%
morphology
9%
oxidation state
9%
rods
9%
nanoparticles
9%
photovoltaic cells
9%
brillouin zones
9%
cadmium sulfides
9%
Material Science
Solar Cell
100%
Ruthenium
100%
Thin Films
100%
Film
36%
Nanoparticle
9%
Crystallite Size
9%
Density
9%
Tensile Strain
9%
Device Type
9%
Spray Pyrolysis
9%
Crystal Structure
9%
Indium Tin Oxide
9%
Oxidation Reaction
9%
Optical Property
9%
Surface Treatment
9%
Chemical Engineering
Pyrolysis
100%
Electrical Mobility
100%
Nanoparticle
100%