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Dihomooxacalix[4]arene-Based Fluorescent Receptors for Anion and Organic Ion Pair Recognition

Fluorescent dihomooxacalix[4]arene-based receptors 5a–5c, bearing two naphthyl(thio)ureido groups at the lower rim via a butyl spacer, were synthesised and obtained in the cone conformation in solution. The X-ray crystal structures of 1,3- (5a) and 3,4-dinaphthylurea (5b) derivatives are reported. T...

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Autores principales: Miranda, Alexandre S., Marcos, Paula M., Ascenso, José R., Berberan-Santos, Mário N., Schurhammer, Rachel, Hickey, Neal, Geremia, Silvano
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7587342/
https://www.ncbi.nlm.nih.gov/pubmed/33066580
http://dx.doi.org/10.3390/molecules25204708
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author Miranda, Alexandre S.
Marcos, Paula M.
Ascenso, José R.
Berberan-Santos, Mário N.
Schurhammer, Rachel
Hickey, Neal
Geremia, Silvano
author_facet Miranda, Alexandre S.
Marcos, Paula M.
Ascenso, José R.
Berberan-Santos, Mário N.
Schurhammer, Rachel
Hickey, Neal
Geremia, Silvano
author_sort Miranda, Alexandre S.
collection PubMed
description Fluorescent dihomooxacalix[4]arene-based receptors 5a–5c, bearing two naphthyl(thio)ureido groups at the lower rim via a butyl spacer, were synthesised and obtained in the cone conformation in solution. The X-ray crystal structures of 1,3- (5a) and 3,4-dinaphthylurea (5b) derivatives are reported. Their binding properties towards several anions of different geometries were assessed by (1)H-NMR, UV-Vis absorption and fluorescence titrations. Structural and energetic insights of the naphthylurea 5a and 5b complexes were also obtained using quantum mechanical calculations. The data showed that all receptors follow the same trend, the association constants increase with the anion basicity, and the strongest complexes were obtained with F(−), followed by the oxoanions AcO(−) and BzO(−). Proximal urea 5b is a better anion receptor compared to distal urea 5a, and both are more efficient than thiourea 5c. Compounds 5a and 5b were also investigated as heteroditopic receptors for biologically relevant alkylammonium salts, such as the neurotransmitter γ-aminobutyric acid (GABA·HCl) and the betaine deoxycarnitine·HCl. Chiral recognition towards the guest sec-butylamine·HCl was also tested, and a 5:2 selectivity for (R)-sec-BuNH(3)(+)·Cl(−) towards (P) or (M) enantiomers of the inherently chiral receptor 5a was shown. Based on DFT calculations, the complex [(S)-sec-BuNH(3)(+)·Cl(−)/(M)-5a] was indicated as the more stable.
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spelling pubmed-75873422020-10-29 Dihomooxacalix[4]arene-Based Fluorescent Receptors for Anion and Organic Ion Pair Recognition Miranda, Alexandre S. Marcos, Paula M. Ascenso, José R. Berberan-Santos, Mário N. Schurhammer, Rachel Hickey, Neal Geremia, Silvano Molecules Article Fluorescent dihomooxacalix[4]arene-based receptors 5a–5c, bearing two naphthyl(thio)ureido groups at the lower rim via a butyl spacer, were synthesised and obtained in the cone conformation in solution. The X-ray crystal structures of 1,3- (5a) and 3,4-dinaphthylurea (5b) derivatives are reported. Their binding properties towards several anions of different geometries were assessed by (1)H-NMR, UV-Vis absorption and fluorescence titrations. Structural and energetic insights of the naphthylurea 5a and 5b complexes were also obtained using quantum mechanical calculations. The data showed that all receptors follow the same trend, the association constants increase with the anion basicity, and the strongest complexes were obtained with F(−), followed by the oxoanions AcO(−) and BzO(−). Proximal urea 5b is a better anion receptor compared to distal urea 5a, and both are more efficient than thiourea 5c. Compounds 5a and 5b were also investigated as heteroditopic receptors for biologically relevant alkylammonium salts, such as the neurotransmitter γ-aminobutyric acid (GABA·HCl) and the betaine deoxycarnitine·HCl. Chiral recognition towards the guest sec-butylamine·HCl was also tested, and a 5:2 selectivity for (R)-sec-BuNH(3)(+)·Cl(−) towards (P) or (M) enantiomers of the inherently chiral receptor 5a was shown. Based on DFT calculations, the complex [(S)-sec-BuNH(3)(+)·Cl(−)/(M)-5a] was indicated as the more stable. MDPI 2020-10-14 /pmc/articles/PMC7587342/ /pubmed/33066580 http://dx.doi.org/10.3390/molecules25204708 Text en © 2020 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Miranda, Alexandre S.
Marcos, Paula M.
Ascenso, José R.
Berberan-Santos, Mário N.
Schurhammer, Rachel
Hickey, Neal
Geremia, Silvano
Dihomooxacalix[4]arene-Based Fluorescent Receptors for Anion and Organic Ion Pair Recognition
title Dihomooxacalix[4]arene-Based Fluorescent Receptors for Anion and Organic Ion Pair Recognition
title_full Dihomooxacalix[4]arene-Based Fluorescent Receptors for Anion and Organic Ion Pair Recognition
title_fullStr Dihomooxacalix[4]arene-Based Fluorescent Receptors for Anion and Organic Ion Pair Recognition
title_full_unstemmed Dihomooxacalix[4]arene-Based Fluorescent Receptors for Anion and Organic Ion Pair Recognition
title_short Dihomooxacalix[4]arene-Based Fluorescent Receptors for Anion and Organic Ion Pair Recognition
title_sort dihomooxacalix[4]arene-based fluorescent receptors for anion and organic ion pair recognition
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7587342/
https://www.ncbi.nlm.nih.gov/pubmed/33066580
http://dx.doi.org/10.3390/molecules25204708
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