Engineering
Band Edge
50%
Band Gap
50%
Charge Carrier
100%
Electron Injection
50%
Electronic State
100%
Free Surface
50%
Gaas Substrate
50%
Gallium Arsenide
100%
Photovoltaics
50%
Physical Structure
50%
Semiconductor Type
50%
Surface Photovoltage
50%
Surface State
50%
Surface Work
50%
Thin Film Spin
50%
Transfer Process
50%
Valence Band
50%
Keyphrases
Charge Transfer Process
25%
Electronic Structure
50%
Free Surface
25%
GaAs Substrate
25%
GaAs(111)
25%
Gallium Arsenide
100%
In Films
25%
Interface Charge Transfer
25%
MEH-PPV
100%
Optical Band Gap
25%
P-type Semiconductor
25%
Photoinduced
25%
Photoinduced Charge Carriers
100%
Photoinduced Electron Injection
25%
Photovoltaic Response
25%
Physical Structure
25%
Spinning Rate
25%
Strong Dependence
25%
Surface Interface
25%
Surface Photovoltage Spectroscopy
25%
Surface Roughness
25%
Surface States
25%
Surface Work Function
25%
Valence Band Edge
25%
Material Science
Charge Carrier
100%
Film
66%
Gallium Arsenide
100%
Photovoltaics
16%
Surface (Surface Science)
100%
Surface Roughness
16%
Thin Films
16%
Transfer Process
16%