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Thin film photodiodes fabricated by electrostatic self-assembly of aqueous colloidal quantum dots
Chang Ching Tu
, Lih Y. Lin
電機工程學系
研究成果
:
雜誌貢獻
›
期刊論文
›
同行評審
5
引文 斯高帕斯(Scopus)
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Keyphrases
Photodiode
100%
Electrostatic Self-assembly
100%
Colloidal Quantum Dots
100%
Annealing
50%
Negatively Charged
50%
Positively Charged
50%
Photocurrent
50%
Aqueous Solution
50%
Device Performance
50%
Active Area
50%
Indium Tin Oxide
50%
Self-assembly
50%
Surface Traps
50%
Electrostatic Force
50%
Photoconductivity
50%
Thiols
50%
Passivation
50%
Photoresist
50%
Ligand Exchange
50%
Photodiode Structures
50%
CdTe Quantum Dots
50%
Inert Environment
50%
Fermi Level pinning
50%
Top Electrode
50%
Photogenerated Electron-hole Pairs
50%
Built-in Electric Field
50%
Aluminum Thin Films
50%
Indium Tin Oxide Substrate
50%
Quantum Dot Synthesis
50%
Photodetection
50%
Work Function Difference
50%
Self-assembled Layers
50%
Capping Ligands
50%
Aluminum Tin Oxide
50%
Engineering
Thin Films
100%
Quantum Dot
100%
Photodiode
100%
Indium-Tin-Oxide
50%
Photocurrent
25%
Device Performance
25%
Active Area
25%
Passivation
25%
Photovoltaics
25%
Hole Pair
25%
Photoresist
25%
Excited Electron
25%
Electrostatic Attraction
25%
Photodetection
25%
Electric Field
25%
Aqueous Solution
25%
Fermi Level
25%
Material Science
Thin Films
100%
Quantum Dot
100%
Self Assembly
100%
Aluminum
50%
Indium Tin Oxide
50%
Photovoltaics
25%
Photoconductivity
25%
Multilayer
25%
Surface (Surface Science)
25%
Chemical Engineering
Film
100%
Tin Oxide
50%
Indium
50%