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A Novel Fluorescence Sensor for Iodide Detection Based on the 1,3-Diaryl Pyrazole Unit with AIE and Mechanochromic Fluorescence Behavior

A D−A type of luminophore, TPA-CDP, was designed and synthesized by using triphenylamine (TPA) as D (electron donor), 1,3-diaryl pyrazole with cyano groups (CDP) as A (electron acceptor) and employing a cyanovinyl segment as a recognition group. Firstly, TPA-CDP demonstrates effective fluorescence q...

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Autores principales: Deng, Lili, Xiong, Jian, Liu, Wenqin, Wu, Lixue, Hu, Huiyi, Wu, Jiaqing, Liu, Yue, Yu, Lide, Zhou, Yuling, Gao, Wenjun, He, Haifeng, Yin, Weiyan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10609397/
https://www.ncbi.nlm.nih.gov/pubmed/37894590
http://dx.doi.org/10.3390/molecules28207111
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author Deng, Lili
Xiong, Jian
Liu, Wenqin
Wu, Lixue
Hu, Huiyi
Wu, Jiaqing
Liu, Yue
Yu, Lide
Zhou, Yuling
Gao, Wenjun
He, Haifeng
Yin, Weiyan
author_facet Deng, Lili
Xiong, Jian
Liu, Wenqin
Wu, Lixue
Hu, Huiyi
Wu, Jiaqing
Liu, Yue
Yu, Lide
Zhou, Yuling
Gao, Wenjun
He, Haifeng
Yin, Weiyan
author_sort Deng, Lili
collection PubMed
description A D−A type of luminophore, TPA-CDP, was designed and synthesized by using triphenylamine (TPA) as D (electron donor), 1,3-diaryl pyrazole with cyano groups (CDP) as A (electron acceptor) and employing a cyanovinyl segment as a recognition group. Firstly, TPA-CDP demonstrates effective fluorescence quenching as a sensor for I(−) by the nucleophilic addition reaction of the cyanovinyl segment with a high level of sensitivity, selectivity and a low determination limit of 4.43 μM. Interestingly, TPA-CDP exhibited an AIE phenomenon with the f(w) value reaching 50%. In addition, TPA-CDP displayed distinct mechanochromic fluorescence behavior with 70 nm red shift, which was observed over four repeated cycles. Furthermore, the mechanochromic fluorescence behavior of TPA-CDP, as observed in powder XRD experiments, was found to be associated with the morphological transition from a crystalline state to an amorphous state. These results confirm the significant potential of CDP as a powerful electron-deficient component in the creation of D−A-type mechanochromic fluorescence materials and biosensors for detecting I(−).
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spelling pubmed-106093972023-10-28 A Novel Fluorescence Sensor for Iodide Detection Based on the 1,3-Diaryl Pyrazole Unit with AIE and Mechanochromic Fluorescence Behavior Deng, Lili Xiong, Jian Liu, Wenqin Wu, Lixue Hu, Huiyi Wu, Jiaqing Liu, Yue Yu, Lide Zhou, Yuling Gao, Wenjun He, Haifeng Yin, Weiyan Molecules Communication A D−A type of luminophore, TPA-CDP, was designed and synthesized by using triphenylamine (TPA) as D (electron donor), 1,3-diaryl pyrazole with cyano groups (CDP) as A (electron acceptor) and employing a cyanovinyl segment as a recognition group. Firstly, TPA-CDP demonstrates effective fluorescence quenching as a sensor for I(−) by the nucleophilic addition reaction of the cyanovinyl segment with a high level of sensitivity, selectivity and a low determination limit of 4.43 μM. Interestingly, TPA-CDP exhibited an AIE phenomenon with the f(w) value reaching 50%. In addition, TPA-CDP displayed distinct mechanochromic fluorescence behavior with 70 nm red shift, which was observed over four repeated cycles. Furthermore, the mechanochromic fluorescence behavior of TPA-CDP, as observed in powder XRD experiments, was found to be associated with the morphological transition from a crystalline state to an amorphous state. These results confirm the significant potential of CDP as a powerful electron-deficient component in the creation of D−A-type mechanochromic fluorescence materials and biosensors for detecting I(−). MDPI 2023-10-16 /pmc/articles/PMC10609397/ /pubmed/37894590 http://dx.doi.org/10.3390/molecules28207111 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Communication
Deng, Lili
Xiong, Jian
Liu, Wenqin
Wu, Lixue
Hu, Huiyi
Wu, Jiaqing
Liu, Yue
Yu, Lide
Zhou, Yuling
Gao, Wenjun
He, Haifeng
Yin, Weiyan
A Novel Fluorescence Sensor for Iodide Detection Based on the 1,3-Diaryl Pyrazole Unit with AIE and Mechanochromic Fluorescence Behavior
title A Novel Fluorescence Sensor for Iodide Detection Based on the 1,3-Diaryl Pyrazole Unit with AIE and Mechanochromic Fluorescence Behavior
title_full A Novel Fluorescence Sensor for Iodide Detection Based on the 1,3-Diaryl Pyrazole Unit with AIE and Mechanochromic Fluorescence Behavior
title_fullStr A Novel Fluorescence Sensor for Iodide Detection Based on the 1,3-Diaryl Pyrazole Unit with AIE and Mechanochromic Fluorescence Behavior
title_full_unstemmed A Novel Fluorescence Sensor for Iodide Detection Based on the 1,3-Diaryl Pyrazole Unit with AIE and Mechanochromic Fluorescence Behavior
title_short A Novel Fluorescence Sensor for Iodide Detection Based on the 1,3-Diaryl Pyrazole Unit with AIE and Mechanochromic Fluorescence Behavior
title_sort novel fluorescence sensor for iodide detection based on the 1,3-diaryl pyrazole unit with aie and mechanochromic fluorescence behavior
topic Communication
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10609397/
https://www.ncbi.nlm.nih.gov/pubmed/37894590
http://dx.doi.org/10.3390/molecules28207111
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