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김성필

Kim, Sung-Phil
Brain-Computer Interface Lab.
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Effective Blue Light-Absorbing AuAg Nanoparticles in InP Quantum Dots-Based Color Conversion

Author(s)
Yeo, Hyo-JinYoon, Suk-YoungJo, Dae-YeonKim, Hyun-MinKwak, JeonghunKim, Sung-PhilKim, Myung-JoonYang, Heesun
Issued Date
2022-12
DOI
10.3390/ma15238455
URI
https://scholarworks.unist.ac.kr/handle/201301/60689
Fulltext
https://www.mdpi.com/1996-1944/15/23/8455
Citation
MATERIALS, v.15, no.23, pp.8455
Abstract
In typical color-by-blue mode-based quantum dot (QD) display devices, only part of the blue excitation light is absorbed by QD emitters, thus it is accompanied by the leakage of blue light through the devices. To address this issue, we offer, for the first time, the applicability of AuAg alloy nanoparticles (NPs) as effective blue light absorbers in InP QD-based color-by-blue platforms. For this, high-quality fluorescent green and red InP QDs with a double shell scheme of ZnSe/ZnS were synthesized and embedded in a transparent polymer film. Separately, a series of Au/Ag ratio-varied AuAg NPs with tunable plasmonic absorption peaks were synthesized. Among them, AuAg NPs possessing the most appropriate absorption peak with respect to spectral overlap with blue emission are chosen for the subsequent preparation of AuAg NP polymeric films with varied NP concentrations. A stack of AuAg NP polymeric film on top of InP QD film is then placed remotely on a blue light-emitting diode, successfully resulting in systematically progressive suppression of blue light leakage with increasing AuAg NP concentration. Furthermore, the beneficial function of the AuAg NP polymeric overlayer in mitigating undesirable QD excitation upon exposure to ambient lights was further examined.
Publisher
MDPI
ISSN
1996-1944
Keyword (Author)
color-by-blueAuAg nanoparticlesInP quantum dotsblue light leakage
Keyword
OPTICAL-PROPERTIESEMITTING DEVICESFACILE SYNTHESISPOLYMER

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