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色坐标可调的单发光体热激子OLED

陈梦亮 沈可 赵洋恺 宋林毅 钱妍

发光学报2024,Vol.45Issue(7):1086-1094,9.
发光学报2024,Vol.45Issue(7):1086-1094,9.DOI:10.37188/CJL.20240091

色坐标可调的单发光体热激子OLED

CIE-tunable OLED Based on Hot Exciton Single Emitter

陈梦亮 1沈可 1赵洋恺 1宋林毅 1钱妍1

作者信息

  • 1. 南京邮电大学 材料科学与工程学院,江苏 南京 210023||南京邮电大学 有机电子与信息显示国家重点实验室,江苏 南京 210023
  • 折叠

摘要

Abstract

High-efficiency organic light-emitting diodes(OLEDs)with adjustable gamut have brought new possibil-ities for display,lighting and optoelectronic applications due to their wide color range.In this work,a series of OLEDs featuring adjustable color coordinates have been fabricated simply by modulation of both host and guest con-centrations,using the hot exciton material C3 as the single luminescent emitter.At a low doping concentration of 2.5%,the C3 molecule in OLEDs exhibits multiple emissions from all its three excited states.Devices L1 and L3,respectively employing single-host and double-host configurations,achieve warm white and cold white light emissions correspondingly.Their CIE coordinates are(0.298,0.381)and(0.241,0.329),respectively,at an operating voltage of 17 V.At a higher doping concentration(10%),the emission from the second singlet state predominates,resulting in yellow-green and green emitting light in single-(L2)and double-host(L4)devices,respectively.Nota-bly,owing to better carrier balance,the dual-host device demonstrated a lower turn-on voltage,improved device effi-ciency,and reduced efficiency roll-off compared to its single-agent device.Due to the hot exciton mechanism which facilitates high-energy-level reverse intersystem crossing,device L4 presents a maximum EQE of 5.36%,surpassing the theoretical upper limit of traditional fluorescent EQE(5%).This work provides a new approach for designing col-or-tunable and white OLEDs based on a single fluorescent emitter.

关键词

色域可调/有机发光二极管/热激子材料

Key words

color gamut adjustable/organic light-emitting diodes/hot exciton materials

分类

信息技术与安全科学

引用本文复制引用

陈梦亮,沈可,赵洋恺,宋林毅,钱妍..色坐标可调的单发光体热激子OLED[J].发光学报,2024,45(7):1086-1094,9.

基金项目

国家自然科学基金(62175115) Supported by National Natural Science Foundation of China(62175115) (62175115)

发光学报

OA北大核心CSTPCD

1000-7032

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