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Photon upconversion for thin film solar cells
J. de Wild
Condensed Matter and Interfaces
Energy and Resources
Nanophotonics
Research output
:
Thesis
›
Doctoral thesis 1 (Research UU / Graduation UU)
Overview
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Dive into the research topics of 'Photon upconversion for thin film solar cells'. Together they form a unique fingerprint.
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Keyphrases
Thin Film Solar Cells
100%
Photon Upconversion
100%
Upconverter
100%
Solar Cell
53%
Lanthanide Ions
26%
NaYF4
26%
Gd2O2S
20%
Yb3+
13%
Light Intensity
13%
Host Material
13%
Er3+
13%
Laser Light
13%
Solar Light
13%
High Energy Photons
13%
Efficient Conversion
13%
Absorption Strength
13%
Emission Spectrum
6%
Solar Spectrum
6%
Specific Emissions
6%
Upconversion
6%
Photon Energy
6%
Conversion Process
6%
A-Si
6%
Solar Cell Efficiency
6%
Absorption Lines
6%
Absorption Spectra
6%
Two-photon
6%
Amorphous Silicon Solar Cell
6%
Plasmon Resonance
6%
Emission Lines
6%
Specific Absorption Rate
6%
Linearly Dependent
6%
Sunlight
6%
Sub-bandgap
6%
Non-radiative Decay
6%
Upconversion Process
6%
Upconversion Efficiency
6%
Simulated Sunlight
6%
Defect Absorption
6%
Ion-doped
6%
Energy Transfer Efficiency
6%
Material Influence
6%
I-V Curve
6%
Low-energy Photons
6%
Gap Defect
6%
Engineering
Film Solar Cell
100%
Thin Films
100%
Solar Cell
100%
Laser Light
25%
High Photon Energy
25%
Luminous Intensity
25%
Conversion Process
12%
Amorphous Silicon Solar Cell
12%
Defect Absorption
12%
Photon Energy
12%
Energy Transfer Rate
12%
Upconverter Solar Cell
12%
Solar Spectra
12%
Real Life
12%
Current-Voltage Characteristic
12%
Band Gap
12%
Chemical Engineering
Rare Earth Element
100%
Photon Upconversion
100%
Film
100%
Material Science
Solar Cell
100%
Thin Films
100%
Lanthanide Series
40%
Current-Voltage Characteristic
10%
Amorphous Silicon Solar Cell
10%
Absorption Spectra
10%