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Precise theoretical model for quantum-dot color conversion

delete2021-06-01
delete15
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OA
AI
S
Sheng Xu
杨涛 封面图
杨涛 (Tao Yang)
J
Jianyao Lin
Q
Qiongxin Shen
L
Li, Jinan
Y
Yuanyuan Ye
L
Luanluan Wang
X
Xiaojian Zhou
陈
陈恩果 (Enguo Chen) *
Y
Yun Ye
T
Tailiang Guo
DOI:10.1364/OE.425556delete
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摘要

摘要

En 中文
Quantum-dot color conversion (QDCC) is a promising technique for next-generation full-color displays, such as QD converted organic light-emitting diodes and micro light-emitting diodes. Although present QDCC research has made some progress on the experimental aspect, the optical model and corresponding mathematical expression that can lay an indispensable foundation for QDCC have not been reported yet. In this paper, we present a theoretical model for precisely describing the complete optical behavior of QDCC, including optical transmission, scattering, absorption, and conversion process. A key parameter of QDCC, called dosage factor (DoF), is defined to quantitatively express the total consumption of QDs that can be calculated as the product of film thickness and QD concentration. Theoretical relations are established between DoF and three key performance indicators of QDCC, namely the light conversion efficiency (LCE), blue light transmittance (BLT), and optical density (OD). The maximum LCE value can be predicted based on this theoretical model, as well as the relationship between the slope of the OD curve and the molar absorption coefficient of blue light. This theoretical model is verified by both simulation and experiment. Results show that the simulation and experimental data highly match the theoretical model, and the goodness of fit reaches higher than 96% for LCE, BLT, and OD. Based on this, the optimal interval of DoF is recommended that provides key guiding significance to the QDCC related experiment. (C) 2021 Optical Society of America under the terms of the OSA Open Access Publishing Agreement
Keyword:
LIGHT-EMITTING-DIODES
HIGH-RESOLUTION
LEDS
REABSORPTION
ENHANCEMENT
UNIFORMITY
SCATTERING
EFFICIENCY
PHOSPHORS
DEVICES

期刊

Optics Express 封面图
Optics Express
IF:
3.3
论文数:
6.1W
被引数:
14.3W

机构

F
fuzhou university
学者数:
3.3W
论文数: 2.1W
被引数: 31
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