INIS
atoms
25%
bismuth selenides
100%
butyric acid
25%
comparative evaluations
25%
conversion
50%
devices
100%
efficiency
75%
esters
25%
holes
100%
increasing
50%
layers
100%
organic solar cells
25%
oxygen
25%
photoelectron spectroscopy
25%
power
50%
resolution
25%
stability
25%
storage
75%
ultraviolet radiation
25%
work functions
75%
x-ray photoelectron spectroscopy
25%
Earth and Planetary Sciences
Bismuth
100%
Butyric Acid
33%
Condition
100%
Efficiency
100%
Ester
33%
High Resolution
33%
Increasing
66%
Month
33%
Phenyls
33%
Photoelectron Spectroscopy
33%
Solar Cell
33%
Stability
33%
Stable
100%
Storage (Process)
33%
Time
33%
Work Function
100%
X Ray Spectroscopy
33%
Chemistry
Bismuth
100%
Butyric Acid
25%
Device
100%
Donor
25%
Doping
50%
Methyl Ester
25%
Nanoplate
25%
Organic Solar Cells
100%
Oxygen Atom
25%
Procedure
50%
Selenide
100%
Storage
75%
Time
25%
Ultra-Violet Photoelectron Spectroscopy
25%
Work Function
75%
X-Ray Photoelectron Spectroscopy
25%
Engineering
Acceptor
33%
Acid
33%
Ambient Condition
100%
Efficiency
33%
High Conductivity
33%
High Resolution
33%
Oxygen Atom
33%
Photoelectron
33%
Power Conversion Efficiency
66%
Ray Photoelectron Spectroscopy
33%
Stability
33%
Storage
100%
Physics
Bismuth
100%
High Resolution
33%
Increasing
66%
Photoelectron Spectroscopy
33%
Solar Cell
33%
Stability
33%
Storage (Process)
33%
Work Functions
100%
X Ray Spectroscopy
33%
Material Science
Conductivity
25%
Devices
100%
Material
25%
Ultra Violet Photoemission Spectroscopy
25%