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Potassium ion-selective fluorescent and pH independent nanosensors based on functionalized polyether macrocycles

We present here a new family of pH insensitive ion-selective optical sensors based on emulsified nanospheres containing densely functionalized 15-, 16-, 18- and 20-membered pyreneamide derivatives. These compounds were successfully synthesized by the reaction of α-diazo-β-ketoesters with cyclic ethe...

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Autores principales: Jarolímová, Zdeňka, Vishe, Mahesh, Lacour, Jérôme, Bakker, Eric
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Royal Society of Chemistry 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5952882/
https://www.ncbi.nlm.nih.gov/pubmed/29896344
http://dx.doi.org/10.1039/c5sc03301b
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author Jarolímová, Zdeňka
Vishe, Mahesh
Lacour, Jérôme
Bakker, Eric
author_facet Jarolímová, Zdeňka
Vishe, Mahesh
Lacour, Jérôme
Bakker, Eric
author_sort Jarolímová, Zdeňka
collection PubMed
description We present here a new family of pH insensitive ion-selective optical sensors based on emulsified nanospheres containing densely functionalized 15-, 16-, 18- and 20-membered pyreneamide derivatives. These compounds were successfully synthesized by the reaction of α-diazo-β-ketoesters with cyclic ethers of the desired size in the presence of dirhodium complexes followed by a stereo-selective tandem amidation-transposition process and characterized by (1)H-NMR, (13)C-NMR, IR, HR-ESI-MS, UV-VIS and fluorescence spectroscopy and potentiometry. Their unique structure consisting of a crown ether ring linked to pyrene moieties through amide groups exhibits on–off switchable behavior upon binding of specific cations and allows one to incorporate these chemosensors as fluorescent ionophores into ion-exchange nanospheres. The nanosphere matrix is composed of bis(2-ethylhexyl)sebacate (DOS), poly(ethylene glycol) (PEG), sodium tetrakis 3,5-bis(trifluoromethyl)phenyl borate and pyreneamide functionalized 18-crown-6 ether (18C6). These optode nanoparticles exhibit a strong affinity to the potassium cation over other metal ions up to the millimolar concentration range in an exhaustive detection mode. The logarithmic complex formation constant was determined using the segmented sandwich membrane method and was found to be 6.5 ± 0.3 (SD) in PVC membrane plasticized with NPOE and 5.3 ± 0.3 (SD) in DOS with a 1 : 1 complex stoichiometry. The nanosensors were characterized in broad range of pH from 4 to 10 and the same linear calibration curves were obtained in the concentration range from 10(–7) M to 10(–5) M and thus the pH dependent response was largely overcome. These nanosensors are sufficiently stable, simple to prepare, exhibit a rapid response and their nanoscale size makes them suitable for sensing purposes in samples of limited dimensions.
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spelling pubmed-59528822018-06-12 Potassium ion-selective fluorescent and pH independent nanosensors based on functionalized polyether macrocycles Jarolímová, Zdeňka Vishe, Mahesh Lacour, Jérôme Bakker, Eric Chem Sci Chemistry We present here a new family of pH insensitive ion-selective optical sensors based on emulsified nanospheres containing densely functionalized 15-, 16-, 18- and 20-membered pyreneamide derivatives. These compounds were successfully synthesized by the reaction of α-diazo-β-ketoesters with cyclic ethers of the desired size in the presence of dirhodium complexes followed by a stereo-selective tandem amidation-transposition process and characterized by (1)H-NMR, (13)C-NMR, IR, HR-ESI-MS, UV-VIS and fluorescence spectroscopy and potentiometry. Their unique structure consisting of a crown ether ring linked to pyrene moieties through amide groups exhibits on–off switchable behavior upon binding of specific cations and allows one to incorporate these chemosensors as fluorescent ionophores into ion-exchange nanospheres. The nanosphere matrix is composed of bis(2-ethylhexyl)sebacate (DOS), poly(ethylene glycol) (PEG), sodium tetrakis 3,5-bis(trifluoromethyl)phenyl borate and pyreneamide functionalized 18-crown-6 ether (18C6). These optode nanoparticles exhibit a strong affinity to the potassium cation over other metal ions up to the millimolar concentration range in an exhaustive detection mode. The logarithmic complex formation constant was determined using the segmented sandwich membrane method and was found to be 6.5 ± 0.3 (SD) in PVC membrane plasticized with NPOE and 5.3 ± 0.3 (SD) in DOS with a 1 : 1 complex stoichiometry. The nanosensors were characterized in broad range of pH from 4 to 10 and the same linear calibration curves were obtained in the concentration range from 10(–7) M to 10(–5) M and thus the pH dependent response was largely overcome. These nanosensors are sufficiently stable, simple to prepare, exhibit a rapid response and their nanoscale size makes them suitable for sensing purposes in samples of limited dimensions. Royal Society of Chemistry 2016-01-01 2015-10-08 /pmc/articles/PMC5952882/ /pubmed/29896344 http://dx.doi.org/10.1039/c5sc03301b Text en This journal is © The Royal Society of Chemistry 2016 https://creativecommons.org/licenses/by-nc/3.0/This article is freely available. This article is licensed under a Creative Commons Attribution Non Commercial 3.0 Unported Licence (CC BY-NC 3.0)
spellingShingle Chemistry
Jarolímová, Zdeňka
Vishe, Mahesh
Lacour, Jérôme
Bakker, Eric
Potassium ion-selective fluorescent and pH independent nanosensors based on functionalized polyether macrocycles
title Potassium ion-selective fluorescent and pH independent nanosensors based on functionalized polyether macrocycles
title_full Potassium ion-selective fluorescent and pH independent nanosensors based on functionalized polyether macrocycles
title_fullStr Potassium ion-selective fluorescent and pH independent nanosensors based on functionalized polyether macrocycles
title_full_unstemmed Potassium ion-selective fluorescent and pH independent nanosensors based on functionalized polyether macrocycles
title_short Potassium ion-selective fluorescent and pH independent nanosensors based on functionalized polyether macrocycles
title_sort potassium ion-selective fluorescent and ph independent nanosensors based on functionalized polyether macrocycles
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5952882/
https://www.ncbi.nlm.nih.gov/pubmed/29896344
http://dx.doi.org/10.1039/c5sc03301b
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AT vishemahesh potassiumionselectivefluorescentandphindependentnanosensorsbasedonfunctionalizedpolyethermacrocycles
AT lacourjerome potassiumionselectivefluorescentandphindependentnanosensorsbasedonfunctionalizedpolyethermacrocycles
AT bakkereric potassiumionselectivefluorescentandphindependentnanosensorsbasedonfunctionalizedpolyethermacrocycles