INIS
thin films
100%
films
100%
matrices
100%
lasers
100%
evaporation
100%
charge transport
100%
transport
66%
crystals
66%
carrier mobility
66%
orthorhombic lattices
66%
layers
33%
levels
33%
applications
33%
hybrids
33%
single crystals
33%
x-ray photoelectron spectroscopy
33%
molecules
33%
length
33%
peroxides
33%
deposition
33%
desorption
33%
fabrication
33%
ionization
33%
x-ray diffraction
33%
decomposition
33%
absorption spectra
33%
spin
33%
nanowires
33%
strong interactions
33%
raman spectra
33%
organic semiconductors
33%
diffusion length
33%
Keyphrases
Charge Transport
100%
Rubrene
100%
Cryo
100%
Rubrene Thin Film
100%
Matrix-assisted Pulsed Laser Evaporation (MAPLE)
100%
Carrier Mobility
33%
Orthorhombic Crystal
33%
Crystalline Content
33%
Organic Semiconductors
16%
X Ray Diffraction
16%
Absorption Spectra
16%
Organic Electronics
16%
Single Crystal
16%
Spherulite
16%
Structure-property Relationships
16%
Nanowires
16%
Transport Properties
16%
Strong Interaction
16%
Structure Composition
16%
Raman Spectra
16%
Band-like Transport
16%
Compositional Properties
16%
Spin Diffusion Length
16%
X-ray Photoelectron Spectra
16%
High-crystalline
16%
Peroxide
16%
Initial Deposition
16%
Optoelectronic Applications
16%
Spintronic Applications
16%
Desorption Ionization
16%
Material Decomposition
16%
Twisted Conformation
16%
Hybrid Electronics
16%
Spherulitic Structures
16%
Material Science
Film
100%
Thin Films
100%
Carrier Mobility
66%
Structure (Composition)
33%
Spin Diffusion
33%
Nanowires
33%
Desorption
33%
X-Ray Diffraction
33%
Peroxide
33%
Single Crystal
33%
Chemical Engineering
Film
100%
Desorption
25%
Semiconducting Organic Compound
25%
Nanowire
25%