DocumentCode
2427470
Title
Fabrication of Organic/Inorganic LED device using nanocrystal quantum dots as active layer
Author
Kang, Byoung-Ho ; Kim, Do-Eok ; Yeom, Se-Hyuk ; Kim, Kyu-Jin ; Seo, Jun-Seon ; Kim, Jae-Hyun ; Kong, Seong-Ho ; Lee, Jung-Hee ; Kwon, Dae-Hyuk ; Kang, Shin-Won
Author_Institution
Sch. of Electr. Eng. & Comput. Sci., Kyungpook Nat. Univ., Daegu, South Korea
fYear
2010
fDate
20-23 Jan. 2010
Firstpage
832
Lastpage
835
Abstract
Recently, researches on nanocrystal quantum dot-based LEDs (NQD-based LEDs) have dramatically increased due to their characteristics resulting in pure and saturated colors with a narrow bandwidth. More importantly, colors can be easily tuned by varying the size or the composition of NQDs, and high quantum yields (QY) of NQDs can increase the efficiency greatly. In spite of high fluorescence QY of NQDs, the reported efficiency of QD-LEDs is still low because the carrier transport is not efficient in the fabricated device. We report efficient electroluminescence in quantum dot-based LEDs by enhancing the electronic coupling of NQDs. 2D array of NQDs formed by spin-coating showed enhanced electrical conductivity. They are incorporated into the light emitting device as an active layer. Current-voltage characteristic and electroluminescent spectra of the device are measured. Electroluminescence efficiency of the device is improved, resulting from the facilitated carrier transport between layers by electronic coupling of NQDs.
Keywords
II-VI semiconductors; cadmium compounds; conducting polymers; electrical conductivity; electroluminescence; light emitting diodes; nanofabrication; nanostructured materials; organic light emitting diodes; organic semiconductors; semiconductor quantum dots; spin coating; wide band gap semiconductors; zinc compounds; CdSe-ZnS; NQD-based LED; carrier transport; electrical conductivity; electroluminescence; electroluminescence efficiency; electronic coupling; nanocrystal quantum dot-based LED; narrow bandwidth; organic-inorganic LED device; pure colors; quantum yields; saturated colors; spin-coating; LED; Nanocrystal; Quantum dots;
fLanguage
English
Publisher
ieee
Conference_Titel
Nano/Micro Engineered and Molecular Systems (NEMS), 2010 5th IEEE International Conference on
Conference_Location
Xiamen
Print_ISBN
978-1-4244-6543-9
Type
conf
DOI
10.1109/NEMS.2010.5592227
Filename
5592227
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