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Realization of Excitation Wavelength Independent Blue Emission of ZnO Quantum Dots with Intrinsic Defects

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Author(s)
Kim H.H.Lee Y.Lee Y.J.Jeong J.Yi Y.Park C.Yim S.-Y.Angadi B.Ko K.-J.Kang J.-W.Choi W.K.
Type
Article
Citation
ACS Photonics, v.7, no.3, pp.723 - 734
Issued Date
2020-03
Abstract
Ecofriendly cation metal oxide quantum dots (QDs) are one of the promising candidates to replace for QDs containing expensive indium (In) or hazardous Cd- and Pb-elements. Super-Eg excitation wavelength (λex) dependent Zni-VO complex defects related characteristic emissions of green, yellow, and orange-red from ZnO QDs are completely inhibited by reducing oxygen vacancies through the hybridization of Zn interstitials in ZnO QDs with antibonding O-states of graphene oxide (GO) QDs. Thus, only λex independent violet-purple-blue (V-P-B) emission resulting from transitions among Frenkel pairs (Zni 0-VZn) and the defects Zni 0-Oi in ZnO-GO QDs with a high photoluminescence quantum yield (PLQY) of 92% is successfully achieved. White-light emission from PL QD-LEDs is achieved using a mixture of ZnO and ZnO-GO QDs with CIE (0.32, 0.34) excited by a UV LEDs chip (λ = 365 nm). Further, ZnO-GO QD-based deep-blue LEDs (λ = 438 nm) with luminance of 1980 cd/m2, a luminous efficacy (LE) of 2.53 cd/A, and external quantum efficiency (EQE) of 2.78% with CIE (0.16, 0.11) are also realized. © 2020 American Chemical Society.
Publisher
American Chemical Society
ISSN
2330-4022
DOI
10.1021/acsphotonics.9b01587
URI
https://scholar.gist.ac.kr/handle/local/12271
Appears in Collections:
ETC > 1. Journal Articles
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