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Effect of nanostructured architecture on the enhanced optical absorption in silicon thin-film solar cells
Y. C. Yao
, M. T. Tsai
, P. W. Lu
, C. J. Wu
, Y. J. Lee
*
*
Corresponding author for this work
Undergraduate Program of Electro-Optical Engineering
Graduate Institute of Electro-Optical Engineering
Research output
:
Contribution to journal
›
Article
›
peer-review
6
Citations (Scopus)
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INIS
architecture
100%
nanostructures
100%
absorption
100%
thin films
100%
silicon
100%
solar cells
100%
efficiency
42%
comparative evaluations
28%
power
28%
conversion
28%
wavelengths
28%
incidents
28%
design
14%
surfaces
14%
crystals
14%
layers
14%
photons
14%
Physics
Solar Cell
100%
Thin Films
100%
Electromagnetic Absorption
100%
Nanorod
100%
Finite Difference Time Domain Method
25%
Nanomaterial
25%
Optical Path
25%
Material Science
Nanorod
100%
Thin-Film Silicon Photovoltaics
100%
Silicon
50%
Thin Films
50%
Surface (Surface Science)
25%
Nanostructure
25%
Finite Difference Method
25%
Engineering
Thin film silicon
50%