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Self-Assembly of Chiral Cyclohexanohemicucurbit[n]urils with Bis(Zn Porphyrin): Size, Shape, and Time-Dependent Binding

In order to investigate the ability of bis(zinc octaethylporphyrin) (bis–ZnOEP) to discriminate cyclohexanohemicucurbit[n]urils (cycHC[n]) of different shapes and sizes, the self-assembly of barrel-shaped chiral cycHC[n] with bis–ZnOEP was studied by various spectroscopic methods (absorption, fluore...

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Autores principales: Šakarašvili, Marko, Ustrnul, Lukas, Suut, Elina, Nallaparaju, Jagadeesh Varma, Mishra, Kamini A., Konrad, Nele, Adamson, Jasper, Borovkov, Victor, Aav, Riina
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8839860/
https://www.ncbi.nlm.nih.gov/pubmed/35164200
http://dx.doi.org/10.3390/molecules27030937
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author Šakarašvili, Marko
Ustrnul, Lukas
Suut, Elina
Nallaparaju, Jagadeesh Varma
Mishra, Kamini A.
Konrad, Nele
Adamson, Jasper
Borovkov, Victor
Aav, Riina
author_facet Šakarašvili, Marko
Ustrnul, Lukas
Suut, Elina
Nallaparaju, Jagadeesh Varma
Mishra, Kamini A.
Konrad, Nele
Adamson, Jasper
Borovkov, Victor
Aav, Riina
author_sort Šakarašvili, Marko
collection PubMed
description In order to investigate the ability of bis(zinc octaethylporphyrin) (bis–ZnOEP) to discriminate cyclohexanohemicucurbit[n]urils (cycHC[n]) of different shapes and sizes, the self-assembly of barrel-shaped chiral cycHC[n] with bis–ZnOEP was studied by various spectroscopic methods (absorption, fluorescence, circular dichroism (CD), and NMR). While the binding of 6-membered cycHC[6] induced a tweezer-like conformation followed by the formation of anti-form of bis–ZnOEP upon further addition of cycHC[6], the interaction of 8-membered cycHC[8] is more complex and proceeds through the featured syn-to-anti conformational change of bis–ZnOEP and further intermolecular self-assembly via multiple noncovalent associations between cycHC[8] and bis–ZnOEP. Whilst bis–porphyrins are known to be effective chemical sensors able to differentiate various guests based on their chirality via induced CD, their ability to sense small differences in the shape and size of relatively large macrocycles, such as chiral cycHC[6] and cycHC[8], is scarcely examined. Both studied complexes exhibited characteristic induced CD signals in the region of porphyrin absorption upon complexation.
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spelling pubmed-88398602022-02-13 Self-Assembly of Chiral Cyclohexanohemicucurbit[n]urils with Bis(Zn Porphyrin): Size, Shape, and Time-Dependent Binding Šakarašvili, Marko Ustrnul, Lukas Suut, Elina Nallaparaju, Jagadeesh Varma Mishra, Kamini A. Konrad, Nele Adamson, Jasper Borovkov, Victor Aav, Riina Molecules Article In order to investigate the ability of bis(zinc octaethylporphyrin) (bis–ZnOEP) to discriminate cyclohexanohemicucurbit[n]urils (cycHC[n]) of different shapes and sizes, the self-assembly of barrel-shaped chiral cycHC[n] with bis–ZnOEP was studied by various spectroscopic methods (absorption, fluorescence, circular dichroism (CD), and NMR). While the binding of 6-membered cycHC[6] induced a tweezer-like conformation followed by the formation of anti-form of bis–ZnOEP upon further addition of cycHC[6], the interaction of 8-membered cycHC[8] is more complex and proceeds through the featured syn-to-anti conformational change of bis–ZnOEP and further intermolecular self-assembly via multiple noncovalent associations between cycHC[8] and bis–ZnOEP. Whilst bis–porphyrins are known to be effective chemical sensors able to differentiate various guests based on their chirality via induced CD, their ability to sense small differences in the shape and size of relatively large macrocycles, such as chiral cycHC[6] and cycHC[8], is scarcely examined. Both studied complexes exhibited characteristic induced CD signals in the region of porphyrin absorption upon complexation. MDPI 2022-01-29 /pmc/articles/PMC8839860/ /pubmed/35164200 http://dx.doi.org/10.3390/molecules27030937 Text en © 2022 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 Article
Šakarašvili, Marko
Ustrnul, Lukas
Suut, Elina
Nallaparaju, Jagadeesh Varma
Mishra, Kamini A.
Konrad, Nele
Adamson, Jasper
Borovkov, Victor
Aav, Riina
Self-Assembly of Chiral Cyclohexanohemicucurbit[n]urils with Bis(Zn Porphyrin): Size, Shape, and Time-Dependent Binding
title Self-Assembly of Chiral Cyclohexanohemicucurbit[n]urils with Bis(Zn Porphyrin): Size, Shape, and Time-Dependent Binding
title_full Self-Assembly of Chiral Cyclohexanohemicucurbit[n]urils with Bis(Zn Porphyrin): Size, Shape, and Time-Dependent Binding
title_fullStr Self-Assembly of Chiral Cyclohexanohemicucurbit[n]urils with Bis(Zn Porphyrin): Size, Shape, and Time-Dependent Binding
title_full_unstemmed Self-Assembly of Chiral Cyclohexanohemicucurbit[n]urils with Bis(Zn Porphyrin): Size, Shape, and Time-Dependent Binding
title_short Self-Assembly of Chiral Cyclohexanohemicucurbit[n]urils with Bis(Zn Porphyrin): Size, Shape, and Time-Dependent Binding
title_sort self-assembly of chiral cyclohexanohemicucurbit[n]urils with bis(zn porphyrin): size, shape, and time-dependent binding
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8839860/
https://www.ncbi.nlm.nih.gov/pubmed/35164200
http://dx.doi.org/10.3390/molecules27030937
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