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Electroluminescence from two I-III-VI quantum dots of A-Ga-S (A=Cu, Ag)

Authors
Kim, Jong-HoonYoon, Suk-YoungKim, Kyung-HyeLim, Han-ByuleKim, Hwi-JaeYang, Heesun
Issue Date
1-Nov-2018
Publisher
OPTICAL SOC AMER
Citation
OPTICS LETTERS, v.43, no.21, pp.5287 - 5290
Journal Title
OPTICS LETTERS
Volume
43
Number
21
Start Page
5287
End Page
5290
URI
https://scholarworks.bwise.kr/hongik/handle/2020.sw.hongik/3017
DOI
10.1364/OL.43.005287
ISSN
0146-9592
Abstract
Together with III-V InP, chalcopyrite I-III-VI metal chalcogenides particularly with the compositions of A-B-S (A = Cu+, Ag+, B = In3+, Ga3+) are regarded as an emerging non-Cd class for synthesis of visible-emitting colloidal quantum dots (QDs) and the following fabrication of QD-light-emitting diodes (QLEDs). To date, the composition of I-III-VI QDs which were exploited for QLED fabrication remains highly limited, with most devices demonstrated from Cu-In-S-based ones. Herein, we explore the synthesis of two Ga-based QDs of Ag-Ga-S (AGS) and Cu-Ga-S (CGS) QDs and their application to QLED fabrication. Using cyan AGS/ZnS and azure CGS/ZnS core/shell QDs, all-solution-processed, multilayered QLEDs with a hybrid combination of organic hole transport layer and inorganic electron transport layer are fabricated and compared. We observe that CGS QLED by far outperforms in luminance and efficiency its AGS counterpart, which is ascribable to the differences in both electronic band structure and core/shell structure between two comparative QDs. (C) 2018 Optical Society of America
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