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Facile access to deep red/near-infrared emissive AIEgens for efficient non-doped OLEDs

Notwithstanding the huge demand in bio-imaging and optoelectronics, the construction of highly emissive deep red/near infrared (DR/NIR) organic luminogens is still a big challenge because a narrow energy gap generally leads to low photoluminescence quantum yield. It is even more difficult to afford...

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Autores principales: Lee, Will W. H., Zhao, Zheng, Cai, Yuanjing, Xu, Zeng, Yu, Ying, Xiong, Yu, Kwok, Ryan T. K., Chen, Yue, Leung, Nelson L. C., Ma, Dongge, Lam, Jacky W. Y., Qin, Anjun, Tang, Ben Zhong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Royal Society of Chemistry 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6118221/
https://www.ncbi.nlm.nih.gov/pubmed/30210763
http://dx.doi.org/10.1039/c8sc01377b
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author Lee, Will W. H.
Zhao, Zheng
Cai, Yuanjing
Xu, Zeng
Yu, Ying
Xiong, Yu
Kwok, Ryan T. K.
Chen, Yue
Leung, Nelson L. C.
Ma, Dongge
Lam, Jacky W. Y.
Qin, Anjun
Tang, Ben Zhong
author_facet Lee, Will W. H.
Zhao, Zheng
Cai, Yuanjing
Xu, Zeng
Yu, Ying
Xiong, Yu
Kwok, Ryan T. K.
Chen, Yue
Leung, Nelson L. C.
Ma, Dongge
Lam, Jacky W. Y.
Qin, Anjun
Tang, Ben Zhong
author_sort Lee, Will W. H.
collection PubMed
description Notwithstanding the huge demand in bio-imaging and optoelectronics, the construction of highly emissive deep red/near infrared (DR/NIR) organic luminogens is still a big challenge because a narrow energy gap generally leads to low photoluminescence quantum yield. It is even more difficult to afford DR/NIR emitters in the solid state due to the aggregation caused quenching (ACQ) effect. In this work, we found that the direct attachment of a tetraphenylethylene substituted arylamine to the electron accepting 2,1,3-benzothiadiazole produces DR/NIR AIE luminogens with bright emission facilely and efficiently. And the emission wavelengths could be tuned from the red to the DR/NIR region by regulating the variety of the substituents. The long emission wavelength and high photoluminescence quantum yield of these AIEgens are ascribed to the effective intramolecular charge transfer and the suppressed intramolecular motion. Furthermore, non-doped OLEDs based on one of the AIEgens showed an EL emission at 684 nm with a large radiance of 5772 mW Sr(–1) m(–2) and an impressive external quantum efficiency (EQE) of 1.73%.
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spelling pubmed-61182212018-09-12 Facile access to deep red/near-infrared emissive AIEgens for efficient non-doped OLEDs Lee, Will W. H. Zhao, Zheng Cai, Yuanjing Xu, Zeng Yu, Ying Xiong, Yu Kwok, Ryan T. K. Chen, Yue Leung, Nelson L. C. Ma, Dongge Lam, Jacky W. Y. Qin, Anjun Tang, Ben Zhong Chem Sci Chemistry Notwithstanding the huge demand in bio-imaging and optoelectronics, the construction of highly emissive deep red/near infrared (DR/NIR) organic luminogens is still a big challenge because a narrow energy gap generally leads to low photoluminescence quantum yield. It is even more difficult to afford DR/NIR emitters in the solid state due to the aggregation caused quenching (ACQ) effect. In this work, we found that the direct attachment of a tetraphenylethylene substituted arylamine to the electron accepting 2,1,3-benzothiadiazole produces DR/NIR AIE luminogens with bright emission facilely and efficiently. And the emission wavelengths could be tuned from the red to the DR/NIR region by regulating the variety of the substituents. The long emission wavelength and high photoluminescence quantum yield of these AIEgens are ascribed to the effective intramolecular charge transfer and the suppressed intramolecular motion. Furthermore, non-doped OLEDs based on one of the AIEgens showed an EL emission at 684 nm with a large radiance of 5772 mW Sr(–1) m(–2) and an impressive external quantum efficiency (EQE) of 1.73%. Royal Society of Chemistry 2018-06-25 /pmc/articles/PMC6118221/ /pubmed/30210763 http://dx.doi.org/10.1039/c8sc01377b Text en This journal is © The Royal Society of Chemistry 2018 http://creativecommons.org/licenses/by/3.0/ This article is freely available. This article is licensed under a Creative Commons Attribution 3.0 Unported Licence (CC BY 3.0)
spellingShingle Chemistry
Lee, Will W. H.
Zhao, Zheng
Cai, Yuanjing
Xu, Zeng
Yu, Ying
Xiong, Yu
Kwok, Ryan T. K.
Chen, Yue
Leung, Nelson L. C.
Ma, Dongge
Lam, Jacky W. Y.
Qin, Anjun
Tang, Ben Zhong
Facile access to deep red/near-infrared emissive AIEgens for efficient non-doped OLEDs
title Facile access to deep red/near-infrared emissive AIEgens for efficient non-doped OLEDs
title_full Facile access to deep red/near-infrared emissive AIEgens for efficient non-doped OLEDs
title_fullStr Facile access to deep red/near-infrared emissive AIEgens for efficient non-doped OLEDs
title_full_unstemmed Facile access to deep red/near-infrared emissive AIEgens for efficient non-doped OLEDs
title_short Facile access to deep red/near-infrared emissive AIEgens for efficient non-doped OLEDs
title_sort facile access to deep red/near-infrared emissive aiegens for efficient non-doped oleds
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6118221/
https://www.ncbi.nlm.nih.gov/pubmed/30210763
http://dx.doi.org/10.1039/c8sc01377b
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