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Simple Bisthiocarbonohydrazone as a Sensitive, Selective, Colorimetric, and Ratiometric Fluorescent Chemosensor for Picric Acids

[Image: see text] A bisthiocarbonohydrazone-based chemosensor molecule (R1) containing a tetrahydro-8-hydroxyquinolizine-9-carboxaldehyde moiety has been synthesized and characterized as a new ratiometric fluorescent probe for picric acid (PA). The ratiometric probe R1 is a highly selective and sens...

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Autores principales: Maiti, Kalipada, Mahapatra, Ajit Kumar, Gangopadhyay, Ankita, Maji, Rajkishor, Mondal, Sanchita, Ali, Syed Samim, Das, Sujoy, Sarkar, Ripon, Datta, Pallab, Mandal, Debasish
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2017
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6641181/
https://www.ncbi.nlm.nih.gov/pubmed/31457524
http://dx.doi.org/10.1021/acsomega.6b00288
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author Maiti, Kalipada
Mahapatra, Ajit Kumar
Gangopadhyay, Ankita
Maji, Rajkishor
Mondal, Sanchita
Ali, Syed Samim
Das, Sujoy
Sarkar, Ripon
Datta, Pallab
Mandal, Debasish
author_facet Maiti, Kalipada
Mahapatra, Ajit Kumar
Gangopadhyay, Ankita
Maji, Rajkishor
Mondal, Sanchita
Ali, Syed Samim
Das, Sujoy
Sarkar, Ripon
Datta, Pallab
Mandal, Debasish
author_sort Maiti, Kalipada
collection PubMed
description [Image: see text] A bisthiocarbonohydrazone-based chemosensor molecule (R1) containing a tetrahydro-8-hydroxyquinolizine-9-carboxaldehyde moiety has been synthesized and characterized as a new ratiometric fluorescent probe for picric acid (PA). The ratiometric probe R1 is a highly selective and sensitive colorimetric chemosensor for PA. The association between the chemosensor and PA and the ratiometric performance enabled by the key role of excited state intramolecular proton transfer in the detection process are demonstrated. Selectivity experiments proved that R1 has excellent selectivity to PA over other nitroaromatic chemicals. Importantly, the ratiometric probe exhibited a noteworthy change in both colorimetric and emission color, and this key feature enables R1 to be employed for detection of PA by simple visual inspection in silica-gel-coated thin-layer chromatography plates. Probe R1 has been shown to detect PA up to 3.2 nM at pH 7.4. Microstructural features of R1 and its PA complex have been measured by a field emission scanning electron microscope, and it clearly proves that their morphological features differ dramatically both in shape and size. Density function theory and time-dependent density function theory calculations were performed to establish the sensing mechanism and the electronic properties of probe R1. Furthermore, we have demonstrated the utility of probe R1 for the detection of PA in live Vero cells for ratiometric fluorescence imaging.
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spelling pubmed-66411812019-08-27 Simple Bisthiocarbonohydrazone as a Sensitive, Selective, Colorimetric, and Ratiometric Fluorescent Chemosensor for Picric Acids Maiti, Kalipada Mahapatra, Ajit Kumar Gangopadhyay, Ankita Maji, Rajkishor Mondal, Sanchita Ali, Syed Samim Das, Sujoy Sarkar, Ripon Datta, Pallab Mandal, Debasish ACS Omega [Image: see text] A bisthiocarbonohydrazone-based chemosensor molecule (R1) containing a tetrahydro-8-hydroxyquinolizine-9-carboxaldehyde moiety has been synthesized and characterized as a new ratiometric fluorescent probe for picric acid (PA). The ratiometric probe R1 is a highly selective and sensitive colorimetric chemosensor for PA. The association between the chemosensor and PA and the ratiometric performance enabled by the key role of excited state intramolecular proton transfer in the detection process are demonstrated. Selectivity experiments proved that R1 has excellent selectivity to PA over other nitroaromatic chemicals. Importantly, the ratiometric probe exhibited a noteworthy change in both colorimetric and emission color, and this key feature enables R1 to be employed for detection of PA by simple visual inspection in silica-gel-coated thin-layer chromatography plates. Probe R1 has been shown to detect PA up to 3.2 nM at pH 7.4. Microstructural features of R1 and its PA complex have been measured by a field emission scanning electron microscope, and it clearly proves that their morphological features differ dramatically both in shape and size. Density function theory and time-dependent density function theory calculations were performed to establish the sensing mechanism and the electronic properties of probe R1. Furthermore, we have demonstrated the utility of probe R1 for the detection of PA in live Vero cells for ratiometric fluorescence imaging. American Chemical Society 2017-04-24 /pmc/articles/PMC6641181/ /pubmed/31457524 http://dx.doi.org/10.1021/acsomega.6b00288 Text en Copyright © 2017 American Chemical Society This is an open access article published under an ACS AuthorChoice License (http://pubs.acs.org/page/policy/authorchoice_termsofuse.html) , which permits copying and redistribution of the article or any adaptations for non-commercial purposes.
spellingShingle Maiti, Kalipada
Mahapatra, Ajit Kumar
Gangopadhyay, Ankita
Maji, Rajkishor
Mondal, Sanchita
Ali, Syed Samim
Das, Sujoy
Sarkar, Ripon
Datta, Pallab
Mandal, Debasish
Simple Bisthiocarbonohydrazone as a Sensitive, Selective, Colorimetric, and Ratiometric Fluorescent Chemosensor for Picric Acids
title Simple Bisthiocarbonohydrazone as a Sensitive, Selective, Colorimetric, and Ratiometric Fluorescent Chemosensor for Picric Acids
title_full Simple Bisthiocarbonohydrazone as a Sensitive, Selective, Colorimetric, and Ratiometric Fluorescent Chemosensor for Picric Acids
title_fullStr Simple Bisthiocarbonohydrazone as a Sensitive, Selective, Colorimetric, and Ratiometric Fluorescent Chemosensor for Picric Acids
title_full_unstemmed Simple Bisthiocarbonohydrazone as a Sensitive, Selective, Colorimetric, and Ratiometric Fluorescent Chemosensor for Picric Acids
title_short Simple Bisthiocarbonohydrazone as a Sensitive, Selective, Colorimetric, and Ratiometric Fluorescent Chemosensor for Picric Acids
title_sort simple bisthiocarbonohydrazone as a sensitive, selective, colorimetric, and ratiometric fluorescent chemosensor for picric acids
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6641181/
https://www.ncbi.nlm.nih.gov/pubmed/31457524
http://dx.doi.org/10.1021/acsomega.6b00288
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