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Anion Recognition by a Pincer-Type Host Constructed from Two Polyamide Macrocyclic Frameworks Jointed by a Photo-Addressable Azobenzene Switch

A sterically crowded light-responsive host 1 was synthetized with a 93% yield by applying a post-functionalization protocol utilizing the double amidation of 4,4′-azodibenzoyl dichloride with a readily available 26-membered macrocyclic amine. X-ray structures of two hydrates of trans-1 demonstrate a...

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Autores principales: Niedbała, Patryk, Ceborska, Magdalena, Mehmet, Mart, Ignacak, Wiktor, Jurczak, Janusz, Dąbrowa, Kajetan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8777895/
https://www.ncbi.nlm.nih.gov/pubmed/35057408
http://dx.doi.org/10.3390/ma15020692
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author Niedbała, Patryk
Ceborska, Magdalena
Mehmet, Mart
Ignacak, Wiktor
Jurczak, Janusz
Dąbrowa, Kajetan
author_facet Niedbała, Patryk
Ceborska, Magdalena
Mehmet, Mart
Ignacak, Wiktor
Jurczak, Janusz
Dąbrowa, Kajetan
author_sort Niedbała, Patryk
collection PubMed
description A sterically crowded light-responsive host 1 was synthetized with a 93% yield by applying a post-functionalization protocol utilizing the double amidation of 4,4′-azodibenzoyl dichloride with a readily available 26-membered macrocyclic amine. X-ray structures of two hydrates of trans-1 demonstrate a very different alignment of the azobenzene linkage, which is involved in T-shape or parallel-displaced π⋯π stacking interactions with the pyridine-2,6-dicarboxamide moieties from the macrocyclic backbone. Despite the rigidity of the macrocyclic framework, which generates a large steric hindrance around the azobenzene chromophore, the host 1 retains the ability to undergo a reversible cis⟷trans isomerization upon irradiation with UVA (368 nm) and blue (410 nm) light. Moreover, thermal cis→trans back-isomerization (ΔG(0) = 106.5 kJ∙mol(−1), t(½) = 141 h) is markedly slowed down as compared to the non-macrocyclic analog. (1)H NMR titration experiments in DMSO-d(6)/0.5% water solution reveal that trans-1 exhibits a strong preference for dihydrogenphosphate (H(2)PO(4)(−)) over other anions (Cl(−), MeCO(2)(−), and PhCO(2)(−)), whereas the photogenerated metastable cis-1 shows lower affinity for the H(2)PO(4)(−) anion.
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spelling pubmed-87778952022-01-22 Anion Recognition by a Pincer-Type Host Constructed from Two Polyamide Macrocyclic Frameworks Jointed by a Photo-Addressable Azobenzene Switch Niedbała, Patryk Ceborska, Magdalena Mehmet, Mart Ignacak, Wiktor Jurczak, Janusz Dąbrowa, Kajetan Materials (Basel) Article A sterically crowded light-responsive host 1 was synthetized with a 93% yield by applying a post-functionalization protocol utilizing the double amidation of 4,4′-azodibenzoyl dichloride with a readily available 26-membered macrocyclic amine. X-ray structures of two hydrates of trans-1 demonstrate a very different alignment of the azobenzene linkage, which is involved in T-shape or parallel-displaced π⋯π stacking interactions with the pyridine-2,6-dicarboxamide moieties from the macrocyclic backbone. Despite the rigidity of the macrocyclic framework, which generates a large steric hindrance around the azobenzene chromophore, the host 1 retains the ability to undergo a reversible cis⟷trans isomerization upon irradiation with UVA (368 nm) and blue (410 nm) light. Moreover, thermal cis→trans back-isomerization (ΔG(0) = 106.5 kJ∙mol(−1), t(½) = 141 h) is markedly slowed down as compared to the non-macrocyclic analog. (1)H NMR titration experiments in DMSO-d(6)/0.5% water solution reveal that trans-1 exhibits a strong preference for dihydrogenphosphate (H(2)PO(4)(−)) over other anions (Cl(−), MeCO(2)(−), and PhCO(2)(−)), whereas the photogenerated metastable cis-1 shows lower affinity for the H(2)PO(4)(−) anion. MDPI 2022-01-17 /pmc/articles/PMC8777895/ /pubmed/35057408 http://dx.doi.org/10.3390/ma15020692 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
Niedbała, Patryk
Ceborska, Magdalena
Mehmet, Mart
Ignacak, Wiktor
Jurczak, Janusz
Dąbrowa, Kajetan
Anion Recognition by a Pincer-Type Host Constructed from Two Polyamide Macrocyclic Frameworks Jointed by a Photo-Addressable Azobenzene Switch
title Anion Recognition by a Pincer-Type Host Constructed from Two Polyamide Macrocyclic Frameworks Jointed by a Photo-Addressable Azobenzene Switch
title_full Anion Recognition by a Pincer-Type Host Constructed from Two Polyamide Macrocyclic Frameworks Jointed by a Photo-Addressable Azobenzene Switch
title_fullStr Anion Recognition by a Pincer-Type Host Constructed from Two Polyamide Macrocyclic Frameworks Jointed by a Photo-Addressable Azobenzene Switch
title_full_unstemmed Anion Recognition by a Pincer-Type Host Constructed from Two Polyamide Macrocyclic Frameworks Jointed by a Photo-Addressable Azobenzene Switch
title_short Anion Recognition by a Pincer-Type Host Constructed from Two Polyamide Macrocyclic Frameworks Jointed by a Photo-Addressable Azobenzene Switch
title_sort anion recognition by a pincer-type host constructed from two polyamide macrocyclic frameworks jointed by a photo-addressable azobenzene switch
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8777895/
https://www.ncbi.nlm.nih.gov/pubmed/35057408
http://dx.doi.org/10.3390/ma15020692
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