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Design of light trapping nanopatterned solar cells based on three-dimensional optical and electrical modeling
Hui Hsin Hsiao
, Hung Chun Chang, Yuh Renn Wu
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Engineering
Mechanisms
100%
Enhancement
100%
Plasmonics
100%
Time Domain Processing
100%
Photocurrent
100%
Diffusion
100%
Stronger Effect
100%
Collecting Efficiency
100%
Surface Topography
100%
Nanomaterial
100%
Recombination
100%
Back Contact
100%
Short-Circuit Current Density
100%
Nanostructure
100%
Fabry Perot
100%
Based Solar Cell
100%
Photonics
100%
INIS
design
100%
modeling
100%
trapping
100%
solar cells
100%
surfaces
50%
resonance
50%
devices
50%
efficiency
50%
diffusion
50%
nanostructures
50%
current density
50%
electrical properties
50%
topography
50%
electrodes
50%
short circuits
50%
physics
50%
optical properties
50%
photocurrents
50%
recombination
50%
Physics
Light
100%
Solar Cell
100%
Electrical Properties
50%
Electrodes
50%
Physics
50%
Optical Properties
50%
Photoelectric Emission
50%
Short Circuit
50%
Focusing
50%
Finite Difference Time Domain Method
50%
Diffusivity
50%
Material Science
Solar Cell
100%
Devices
50%
Density
50%
Electrical Property
50%
Electrode
50%
Nanocrystalline Material
50%
Optical Property
50%
Finite Difference
50%
Electronic Circuit
50%
Surface Topography
50%