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Magnetically enhanced luminescence of CdSe/ZnS quantum dot light-emitting diodes using circular ferromagnetic Co/Pt multilayer disks

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Abstract
We investigate the effect of a magnetic field on red, green, and blue CdSe/ZnS quantum dot light-emitting diodes (QDLEDs). Circular multilayer ferromagnetic cobalt/platinum (Co/Pt) disks are deposited on a MgF2 layer covering an Al electrode, and a perpendicular magnetic field is applied to the QDs in the active layer. Carriers injected into the active layer are then trapped and efficiently recombined inside the QDs because of strong carrier localization caused by the perpendicular magnetic field. The luminescence of the QDLEDs in the multilayer increases by 33.31% at 7.5 V, 22.34% at 7.5 V, and 16.73% at 7.0 V compared with that of QDLEDs without the multilayer. The time-resolved photoluminescence of all the QDLEDs also indicates that their increased luminescence results from improved radiative recombination through the stronger carrier localization in the QDs. © 2019 Optical Society of America under the terms of the OSA Open Access Publishing Agreement
Author(s)
Han J.-H.Kim N.-Y.Kim S.-J.Kwak W.Cho, Beong KiPark, Seong-JuLee D.-S.
Issued Date
2019-12
Type
Article
DOI
10.1364/OE.27.036601
URI
https://scholar.gist.ac.kr/handle/local/8821
Publisher
Optical Society of America
Citation
Optics Express, v.27, no.25, pp.36601 - 36610
ISSN
1094-4087
Appears in Collections:
Department of Materials Science and Engineering > 1. Journal Articles
Department of Semiconductor Engineering > 1. Journal Articles
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