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Highly efficient and stable deep-blue OLEDs based on narrowband emitters featuring an orthogonal spiro-configured indolo[3,2,1-de]acridine structure

High-efficiency and stable deep-blue bottom-emitting organic light-emitting diodes with Commission Internationale de l'Eclairage y coordinates (CIE(y)s) < 0.08 remain exclusive in the literature owing to the high excited-state energy of the emitters. Here, we propose the utilization of narro...

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Autores principales: Meng, Guoyun, Zhang, Dongdong, Wei, Jinbei, Zhang, Yuewei, Huang, Tianyu, Liu, Ziyang, Yin, Chen, Hong, Xiangchen, Wang, Xiang, Zeng, Xuan, Yang, Dezhi, Ma, Dongge, Li, Guomeng, Duan, Lian
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9116299/
https://www.ncbi.nlm.nih.gov/pubmed/35694343
http://dx.doi.org/10.1039/d2sc01543a
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author Meng, Guoyun
Zhang, Dongdong
Wei, Jinbei
Zhang, Yuewei
Huang, Tianyu
Liu, Ziyang
Yin, Chen
Hong, Xiangchen
Wang, Xiang
Zeng, Xuan
Yang, Dezhi
Ma, Dongge
Li, Guomeng
Duan, Lian
author_facet Meng, Guoyun
Zhang, Dongdong
Wei, Jinbei
Zhang, Yuewei
Huang, Tianyu
Liu, Ziyang
Yin, Chen
Hong, Xiangchen
Wang, Xiang
Zeng, Xuan
Yang, Dezhi
Ma, Dongge
Li, Guomeng
Duan, Lian
author_sort Meng, Guoyun
collection PubMed
description High-efficiency and stable deep-blue bottom-emitting organic light-emitting diodes with Commission Internationale de l'Eclairage y coordinates (CIE(y)s) < 0.08 remain exclusive in the literature owing to the high excited-state energy of the emitters. Here, we propose the utilization of narrowband emitters to lower the excited-state energy for stable deep-blue devices by taking advantage of their high color purity. Two proof-of-concept deep-blue emitters with nitrogen-containing spiro-configured polycyclic frameworks are thereafter developed to introduce a multi-resonance effect for narrow emissions and sterically orthogonal configurations for alleviated molecular interactions. Both emitters show bright ultrapure deep-blue emissions with an extremely small full-width-at-half-maxima of only 18–19 nm, which can be maintained even in heavily doped films. Small CIE(y)s of 0.054 and 0.066 are therefore measured from the corresponding electroluminescence devices with peak energies of only 2.77 eV (448 nm) and 2.74 eV (453 nm), accounting for the remarkably long LT80s (lifetime to 80% of the initial luminance) of 18 900 and 43 470 hours at 100 cd m(−2), respectively. Furthermore, by adopting a thermally activated delayed fluorescence sensitizer, impressive maximum external quantum efficiencies of 25% and 31% are recorded respectively, representing state-of-the-art performances for deep-blue devices.
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spelling pubmed-91162992022-06-10 Highly efficient and stable deep-blue OLEDs based on narrowband emitters featuring an orthogonal spiro-configured indolo[3,2,1-de]acridine structure Meng, Guoyun Zhang, Dongdong Wei, Jinbei Zhang, Yuewei Huang, Tianyu Liu, Ziyang Yin, Chen Hong, Xiangchen Wang, Xiang Zeng, Xuan Yang, Dezhi Ma, Dongge Li, Guomeng Duan, Lian Chem Sci Chemistry High-efficiency and stable deep-blue bottom-emitting organic light-emitting diodes with Commission Internationale de l'Eclairage y coordinates (CIE(y)s) < 0.08 remain exclusive in the literature owing to the high excited-state energy of the emitters. Here, we propose the utilization of narrowband emitters to lower the excited-state energy for stable deep-blue devices by taking advantage of their high color purity. Two proof-of-concept deep-blue emitters with nitrogen-containing spiro-configured polycyclic frameworks are thereafter developed to introduce a multi-resonance effect for narrow emissions and sterically orthogonal configurations for alleviated molecular interactions. Both emitters show bright ultrapure deep-blue emissions with an extremely small full-width-at-half-maxima of only 18–19 nm, which can be maintained even in heavily doped films. Small CIE(y)s of 0.054 and 0.066 are therefore measured from the corresponding electroluminescence devices with peak energies of only 2.77 eV (448 nm) and 2.74 eV (453 nm), accounting for the remarkably long LT80s (lifetime to 80% of the initial luminance) of 18 900 and 43 470 hours at 100 cd m(−2), respectively. Furthermore, by adopting a thermally activated delayed fluorescence sensitizer, impressive maximum external quantum efficiencies of 25% and 31% are recorded respectively, representing state-of-the-art performances for deep-blue devices. The Royal Society of Chemistry 2022-04-20 /pmc/articles/PMC9116299/ /pubmed/35694343 http://dx.doi.org/10.1039/d2sc01543a Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Meng, Guoyun
Zhang, Dongdong
Wei, Jinbei
Zhang, Yuewei
Huang, Tianyu
Liu, Ziyang
Yin, Chen
Hong, Xiangchen
Wang, Xiang
Zeng, Xuan
Yang, Dezhi
Ma, Dongge
Li, Guomeng
Duan, Lian
Highly efficient and stable deep-blue OLEDs based on narrowband emitters featuring an orthogonal spiro-configured indolo[3,2,1-de]acridine structure
title Highly efficient and stable deep-blue OLEDs based on narrowband emitters featuring an orthogonal spiro-configured indolo[3,2,1-de]acridine structure
title_full Highly efficient and stable deep-blue OLEDs based on narrowband emitters featuring an orthogonal spiro-configured indolo[3,2,1-de]acridine structure
title_fullStr Highly efficient and stable deep-blue OLEDs based on narrowband emitters featuring an orthogonal spiro-configured indolo[3,2,1-de]acridine structure
title_full_unstemmed Highly efficient and stable deep-blue OLEDs based on narrowband emitters featuring an orthogonal spiro-configured indolo[3,2,1-de]acridine structure
title_short Highly efficient and stable deep-blue OLEDs based on narrowband emitters featuring an orthogonal spiro-configured indolo[3,2,1-de]acridine structure
title_sort highly efficient and stable deep-blue oleds based on narrowband emitters featuring an orthogonal spiro-configured indolo[3,2,1-de]acridine structure
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9116299/
https://www.ncbi.nlm.nih.gov/pubmed/35694343
http://dx.doi.org/10.1039/d2sc01543a
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