INIS
interfaces
100%
charges
100%
quantum dots
100%
esters
100%
confinement
100%
butyric acid
100%
lead sulfides
100%
size
62%
alignment
37%
distribution
37%
electron beam injection
37%
data
25%
absorption
25%
steady-state conditions
25%
design
12%
energy
12%
engineering
12%
signals
12%
cost
12%
solar cells
12%
concentration
12%
resolution
12%
photoluminescence
12%
separation processes
12%
quenching
12%
time resolution
12%
absorption spectroscopy
12%
solar energy conversion
12%
transfer (electron)
12%
Chemistry
Quantum Dot
100%
Butyric Acid
100%
Methyl Ester
100%
Band Gap
50%
Electron Particle
37%
Size Distribution
37%
Charge Separation
25%
Photoluminescence
12%
Quantum Size Effect
12%
Atomic Absorption Spectroscopy
12%
Electron Transfer
12%
Solar Energy Conversion
12%
Procedure
12%
Rate
12%
Time
12%
Particle Size
12%
Engineering Process
12%
Atom
12%
Concentration
12%
Sample
12%
Energy
12%
Engineering
Quantum Confinement
100%
Acid
100%
Electron Injection
37%
Alignment
37%
Size Distribution
37%
Charge Separation
25%
Transients
25%
Demonstrates
25%
Energy Conversion
12%
Measurement
12%
Solar Energy
12%
Energy Band
12%
Temporal Resolution
12%
Femtosecond
12%
Light Absorption
12%
Size Effect
12%
Elements
12%
Design
12%
Engineering
12%
Sample Result
12%
Physics
Confinement
100%
Charge Transfer
100%
Energy Gaps (Solid State)
50%
Injection
37%
Steady State
25%
Transients
25%
Solar Cell
12%
Broadband
12%
Photoluminescence
12%
Quantum Size Effect
12%
Absorption Spectroscopy
12%
Electromagnetic Absorption
12%
Solar Energy Conversion
12%
Transferring
12%
Magnitude
12%
Technology
12%
Alternatives
12%
Work
12%
Energy Bands
12%
Material Science
Quantum Dot
100%
Photovoltaic Technology
12%
Photoluminescence
12%
Absorption Spectroscopy
12%
Electron Transfer
12%
Solar Cell
12%