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Single-Component Color-Tunable Smart Organic Emitters with Simultaneous Multistage Stimuli-Responsiveness and Multimode Emissions

Achieving color-tunable emission in single-component organic emitters with multistage stimuli-responsiveness is of vital significance for intelligent optoelectronic applications, but remains enormously challenging. Herein, we present an unprecedented example of a color-tunable single-component smart...

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Detalles Bibliográficos
Autores principales: Yan, Yu, Liu, Chengfang, Fan, Jianzhong, Li, Yusheng, Liu, Huanling, Wang, Qian, Li, Xiangchun, Li, Junfeng, Lai, Wen-Yong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: AAAS 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10539023/
https://www.ncbi.nlm.nih.gov/pubmed/37779635
http://dx.doi.org/10.34133/research.0241
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author Yan, Yu
Liu, Chengfang
Fan, Jianzhong
Li, Yusheng
Liu, Huanling
Wang, Qian
Li, Xiangchun
Li, Junfeng
Lai, Wen-Yong
author_facet Yan, Yu
Liu, Chengfang
Fan, Jianzhong
Li, Yusheng
Liu, Huanling
Wang, Qian
Li, Xiangchun
Li, Junfeng
Lai, Wen-Yong
author_sort Yan, Yu
collection PubMed
description Achieving color-tunable emission in single-component organic emitters with multistage stimuli-responsiveness is of vital significance for intelligent optoelectronic applications, but remains enormously challenging. Herein, we present an unprecedented example of a color-tunable single-component smart organic emitter (DDOP) that simultaneously exhibits multistage stimuli-responsiveness and multimode emissions. DDOP based on a highly twisted amide-bridged donor–acceptor–donor structure has been found to facilitate intersystem crossing, form multimode emissions, and generate multiple emissive species with multistage stimuli-responsiveness. DDOP pristine crystalline powders exhibit abnormal excitation-dependent emissions from a monomer-dominated blue emission centered at 470 nm to a dimer-dominated yellow emission centered at 550 nm through decreasing the ultraviolet (UV) excitation wavelengths, whereas DDOP single crystals show a wide emission band with a main emission peak at 585 nm when excited at different wavelengths. The emission behaviors of pristine crystalline powders and single crystals are different, demonstrating emission features that are closely related to the aggregation states. The work has developed color-tunable single-component organic emitters with simultaneous multistage stimuli-responsiveness and multimode emissions, which is vital for expanding intelligent optoelectronic applications, including multilevel information encryption, multicolor emissive patterns, and visual monitoring of UV wavelengths.
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spelling pubmed-105390232023-09-29 Single-Component Color-Tunable Smart Organic Emitters with Simultaneous Multistage Stimuli-Responsiveness and Multimode Emissions Yan, Yu Liu, Chengfang Fan, Jianzhong Li, Yusheng Liu, Huanling Wang, Qian Li, Xiangchun Li, Junfeng Lai, Wen-Yong Research (Wash D C) Research Article Achieving color-tunable emission in single-component organic emitters with multistage stimuli-responsiveness is of vital significance for intelligent optoelectronic applications, but remains enormously challenging. Herein, we present an unprecedented example of a color-tunable single-component smart organic emitter (DDOP) that simultaneously exhibits multistage stimuli-responsiveness and multimode emissions. DDOP based on a highly twisted amide-bridged donor–acceptor–donor structure has been found to facilitate intersystem crossing, form multimode emissions, and generate multiple emissive species with multistage stimuli-responsiveness. DDOP pristine crystalline powders exhibit abnormal excitation-dependent emissions from a monomer-dominated blue emission centered at 470 nm to a dimer-dominated yellow emission centered at 550 nm through decreasing the ultraviolet (UV) excitation wavelengths, whereas DDOP single crystals show a wide emission band with a main emission peak at 585 nm when excited at different wavelengths. The emission behaviors of pristine crystalline powders and single crystals are different, demonstrating emission features that are closely related to the aggregation states. The work has developed color-tunable single-component organic emitters with simultaneous multistage stimuli-responsiveness and multimode emissions, which is vital for expanding intelligent optoelectronic applications, including multilevel information encryption, multicolor emissive patterns, and visual monitoring of UV wavelengths. AAAS 2023-09-28 /pmc/articles/PMC10539023/ /pubmed/37779635 http://dx.doi.org/10.34133/research.0241 Text en Copyright © 2023 Yu Yan et al. https://creativecommons.org/licenses/by/4.0/Exclusive licensee Science and Technology Review Publishing House. No claim to original U.S. Government Works. Distributed under a Creative Commons Attribution License 4.0 (CC BY 4.0) (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Research Article
Yan, Yu
Liu, Chengfang
Fan, Jianzhong
Li, Yusheng
Liu, Huanling
Wang, Qian
Li, Xiangchun
Li, Junfeng
Lai, Wen-Yong
Single-Component Color-Tunable Smart Organic Emitters with Simultaneous Multistage Stimuli-Responsiveness and Multimode Emissions
title Single-Component Color-Tunable Smart Organic Emitters with Simultaneous Multistage Stimuli-Responsiveness and Multimode Emissions
title_full Single-Component Color-Tunable Smart Organic Emitters with Simultaneous Multistage Stimuli-Responsiveness and Multimode Emissions
title_fullStr Single-Component Color-Tunable Smart Organic Emitters with Simultaneous Multistage Stimuli-Responsiveness and Multimode Emissions
title_full_unstemmed Single-Component Color-Tunable Smart Organic Emitters with Simultaneous Multistage Stimuli-Responsiveness and Multimode Emissions
title_short Single-Component Color-Tunable Smart Organic Emitters with Simultaneous Multistage Stimuli-Responsiveness and Multimode Emissions
title_sort single-component color-tunable smart organic emitters with simultaneous multistage stimuli-responsiveness and multimode emissions
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10539023/
https://www.ncbi.nlm.nih.gov/pubmed/37779635
http://dx.doi.org/10.34133/research.0241
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