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Cyclohexamer [-(d-Phe-azaPhe-Ala)(2)-]: good candidate to formulate supramolecular organogels

Molecular self-assembly is a fascinating process which has become an area of great interest in supramolecular chemistry, as it leads in certain cases to molecular gels. Organogels formulated from low molecular weight compounds (LMWOGs) have attracted much interest in the past decades due to their ap...

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Autores principales: Ibrahim, Mohamed I. A., Pickaert, Guillaume, Stefan, Loïc, Jamart-Grégoire, Brigitte, Bodiguel, Jacques, Averlant-Petit, Marie-Christine
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9058333/
https://www.ncbi.nlm.nih.gov/pubmed/35519698
http://dx.doi.org/10.1039/d0ra07775e
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author Ibrahim, Mohamed I. A.
Pickaert, Guillaume
Stefan, Loïc
Jamart-Grégoire, Brigitte
Bodiguel, Jacques
Averlant-Petit, Marie-Christine
author_facet Ibrahim, Mohamed I. A.
Pickaert, Guillaume
Stefan, Loïc
Jamart-Grégoire, Brigitte
Bodiguel, Jacques
Averlant-Petit, Marie-Christine
author_sort Ibrahim, Mohamed I. A.
collection PubMed
description Molecular self-assembly is a fascinating process which has become an area of great interest in supramolecular chemistry, as it leads in certain cases to molecular gels. Organogels formulated from low molecular weight compounds (LMWOGs) have attracted much interest in the past decades due to their applications as new soft materials. Herein, we report on the ability of the cyclic pseudopeptide cyclo-[-(d-Phe-azaPhe-Ala)(2)-] (2) to self-assemble in some aromatic solvents and to form organogels driven by non-covalent forces, mainly hydrogen bonding and π-stacking interactions. Comprehensive FTIR and NMR studies emphasized that this cyclic aza-peptide adopts a β-turn conformation at low concentration in toluene, while an equilibrium between the monomeric states (intramolecular forces) and the supramolecular structures (intra- and intermolecular forces) is established at high concentration (gel state). Rheological investigations of the organogels highlight the dependence of their stiffness (up to ∼4 kPa) and sol/gel transition temperatures (up to 100 °C) as a function of the solvent and concentration of gelator used. The formulation of fibrous structures confirmed the phenomenon of self-assembly. Finally, we found that cyclo-[-(d-Phe-azaPhe-Ala)(2)-] is an effective organogelator for application in phase selective gelation (PSG) of organic solvents from aqueous/organic mixtures with recovery percents up to 96%.
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spelling pubmed-90583332022-05-04 Cyclohexamer [-(d-Phe-azaPhe-Ala)(2)-]: good candidate to formulate supramolecular organogels Ibrahim, Mohamed I. A. Pickaert, Guillaume Stefan, Loïc Jamart-Grégoire, Brigitte Bodiguel, Jacques Averlant-Petit, Marie-Christine RSC Adv Chemistry Molecular self-assembly is a fascinating process which has become an area of great interest in supramolecular chemistry, as it leads in certain cases to molecular gels. Organogels formulated from low molecular weight compounds (LMWOGs) have attracted much interest in the past decades due to their applications as new soft materials. Herein, we report on the ability of the cyclic pseudopeptide cyclo-[-(d-Phe-azaPhe-Ala)(2)-] (2) to self-assemble in some aromatic solvents and to form organogels driven by non-covalent forces, mainly hydrogen bonding and π-stacking interactions. Comprehensive FTIR and NMR studies emphasized that this cyclic aza-peptide adopts a β-turn conformation at low concentration in toluene, while an equilibrium between the monomeric states (intramolecular forces) and the supramolecular structures (intra- and intermolecular forces) is established at high concentration (gel state). Rheological investigations of the organogels highlight the dependence of their stiffness (up to ∼4 kPa) and sol/gel transition temperatures (up to 100 °C) as a function of the solvent and concentration of gelator used. The formulation of fibrous structures confirmed the phenomenon of self-assembly. Finally, we found that cyclo-[-(d-Phe-azaPhe-Ala)(2)-] is an effective organogelator for application in phase selective gelation (PSG) of organic solvents from aqueous/organic mixtures with recovery percents up to 96%. The Royal Society of Chemistry 2020-12-07 /pmc/articles/PMC9058333/ /pubmed/35519698 http://dx.doi.org/10.1039/d0ra07775e Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Ibrahim, Mohamed I. A.
Pickaert, Guillaume
Stefan, Loïc
Jamart-Grégoire, Brigitte
Bodiguel, Jacques
Averlant-Petit, Marie-Christine
Cyclohexamer [-(d-Phe-azaPhe-Ala)(2)-]: good candidate to formulate supramolecular organogels
title Cyclohexamer [-(d-Phe-azaPhe-Ala)(2)-]: good candidate to formulate supramolecular organogels
title_full Cyclohexamer [-(d-Phe-azaPhe-Ala)(2)-]: good candidate to formulate supramolecular organogels
title_fullStr Cyclohexamer [-(d-Phe-azaPhe-Ala)(2)-]: good candidate to formulate supramolecular organogels
title_full_unstemmed Cyclohexamer [-(d-Phe-azaPhe-Ala)(2)-]: good candidate to formulate supramolecular organogels
title_short Cyclohexamer [-(d-Phe-azaPhe-Ala)(2)-]: good candidate to formulate supramolecular organogels
title_sort cyclohexamer [-(d-phe-azaphe-ala)(2)-]: good candidate to formulate supramolecular organogels
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9058333/
https://www.ncbi.nlm.nih.gov/pubmed/35519698
http://dx.doi.org/10.1039/d0ra07775e
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