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Highly efficient indoor light quasi-solid-state dye sensitized solar cells using cobalt polyethylene oxide-based printable electrolytes
Shanmuganathan Venkatesan
, I. Ping Liu
, Chih Mei Tseng Shan
,
Hsisheng Teng
,
Yuh Lang Lee
化學工程學系
研究成果
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引文 斯高帕斯(Scopus)
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Keyphrases
High Efficiency
100%
Oxide-based
100%
Poly(ethylene oxide)
100%
Cobalt
100%
Indoor Lighting
100%
Printable Electrolyte
100%
Quasi-solid-state Dye-sensitized Solar Cell
100%
Co(III) Complex
77%
Power Conversion Efficiency
66%
Poly(methyl methacrylate)
66%
Li +
44%
Quasi-solid-state DSSC
33%
CO 2
22%
Recombination
22%
Photoelectrode
22%
Backlight
11%
High Performance
11%
Molecular Structure
11%
Redox Couple
11%
Oxide-oxide
11%
Electrolyte Interface
11%
Front Surface
11%
Li+ Ions
11%
Excited Electrons
11%
Electron Recombination
11%
High Power Conversion Efficiency
11%
Negatively Charged
11%
Concentration Variation
11%
Front-back
11%
Lone Electron Pair
11%
Optimal Power
11%
Bifacial
11%
Environmental Applications
11%
Charged Ions
11%
Light Environment
11%
Room Light
11%
Material Science
Dye-Sensitized Solar Cell
100%
Polyethylene Glycol
100%
Cobalt
100%
Poly Methyl Methacrylate
66%
Lithium Ion
11%
Molecular Structure
11%
Engineering
Dye-Sensitized Solar Cell
100%
Power Conversion Efficiency
100%
Front Side
14%
Back Side
14%
Optimal Condition
14%
Redox Couple
14%
Excited Electron
14%
Electrolyte Interface
14%
Chemical Engineering
Polyethylene Glycol
100%
Polymethyl Methacrylate
66%