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Synthesis of Purine-Based Ionic Liquids and Their Applications

Bio-based ionic liquids (ILs) are being increasingly sought after, as they are more sustainable and eco-friendly. Purines are the most widely distributed, naturally occurring N-heterocycles, but their low water-solubility limits their application. In this work, four purines (theobromine, theophyllin...

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Autores principales: Carreira, Ana R. F., Veloso, Telma, Schaeffer, Nicolas, Pereira, Joana L., Ventura, Sónia P. M., Rizzi, Cécile, Sirieix Plénet, Juliette, Passos, Helena, Coutinho, João A. P.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8620494/
https://www.ncbi.nlm.nih.gov/pubmed/34834050
http://dx.doi.org/10.3390/molecules26226958
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author Carreira, Ana R. F.
Veloso, Telma
Schaeffer, Nicolas
Pereira, Joana L.
Ventura, Sónia P. M.
Rizzi, Cécile
Sirieix Plénet, Juliette
Passos, Helena
Coutinho, João A. P.
author_facet Carreira, Ana R. F.
Veloso, Telma
Schaeffer, Nicolas
Pereira, Joana L.
Ventura, Sónia P. M.
Rizzi, Cécile
Sirieix Plénet, Juliette
Passos, Helena
Coutinho, João A. P.
author_sort Carreira, Ana R. F.
collection PubMed
description Bio-based ionic liquids (ILs) are being increasingly sought after, as they are more sustainable and eco-friendly. Purines are the most widely distributed, naturally occurring N-heterocycles, but their low water-solubility limits their application. In this work, four purines (theobromine, theophylline, xanthine, and uric acid) were combined with the cation tetrabutylammonium to synthesize bio-based ILs. The physico–chemical properties of the purine-based ILs were characterized, including their melting and decomposition temperatures and water-solubility. The ecotoxicity against the microalgae Raphidocelis subcapitata was also determined. The ILs show good thermal stability (>457 K) and an aqueous solubility enhancement ranging from 53- to 870-fold, in comparison to their respective purine percursors, unlocking new prospects for their application where aqueous solutions are demanded. The ecotoxicity of these ILs seems to be dominated by the cation, and it is similar to chloride-based IL, emphasizing that the use of natural anions does not necessarily translate to more benign ILs. The application of the novel ILs in the formation of aqueous biphasic systems (ABS), and as solubility enhancers, was also evaluated. The ILs were able to form ABS with sodium sulfate and tripotassium citrate salts. The development of thermoresponsive ABS, using sodium sulfate as a salting-out agent, was accomplished, with the ILs having different thermosensitivities. In addition, the purine-based ILs acted as solubility enhancers of ferulic acid in aqueous solution.
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spelling pubmed-86204942021-11-27 Synthesis of Purine-Based Ionic Liquids and Their Applications Carreira, Ana R. F. Veloso, Telma Schaeffer, Nicolas Pereira, Joana L. Ventura, Sónia P. M. Rizzi, Cécile Sirieix Plénet, Juliette Passos, Helena Coutinho, João A. P. Molecules Article Bio-based ionic liquids (ILs) are being increasingly sought after, as they are more sustainable and eco-friendly. Purines are the most widely distributed, naturally occurring N-heterocycles, but their low water-solubility limits their application. In this work, four purines (theobromine, theophylline, xanthine, and uric acid) were combined with the cation tetrabutylammonium to synthesize bio-based ILs. The physico–chemical properties of the purine-based ILs were characterized, including their melting and decomposition temperatures and water-solubility. The ecotoxicity against the microalgae Raphidocelis subcapitata was also determined. The ILs show good thermal stability (>457 K) and an aqueous solubility enhancement ranging from 53- to 870-fold, in comparison to their respective purine percursors, unlocking new prospects for their application where aqueous solutions are demanded. The ecotoxicity of these ILs seems to be dominated by the cation, and it is similar to chloride-based IL, emphasizing that the use of natural anions does not necessarily translate to more benign ILs. The application of the novel ILs in the formation of aqueous biphasic systems (ABS), and as solubility enhancers, was also evaluated. The ILs were able to form ABS with sodium sulfate and tripotassium citrate salts. The development of thermoresponsive ABS, using sodium sulfate as a salting-out agent, was accomplished, with the ILs having different thermosensitivities. In addition, the purine-based ILs acted as solubility enhancers of ferulic acid in aqueous solution. MDPI 2021-11-18 /pmc/articles/PMC8620494/ /pubmed/34834050 http://dx.doi.org/10.3390/molecules26226958 Text en © 2021 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
Carreira, Ana R. F.
Veloso, Telma
Schaeffer, Nicolas
Pereira, Joana L.
Ventura, Sónia P. M.
Rizzi, Cécile
Sirieix Plénet, Juliette
Passos, Helena
Coutinho, João A. P.
Synthesis of Purine-Based Ionic Liquids and Their Applications
title Synthesis of Purine-Based Ionic Liquids and Their Applications
title_full Synthesis of Purine-Based Ionic Liquids and Their Applications
title_fullStr Synthesis of Purine-Based Ionic Liquids and Their Applications
title_full_unstemmed Synthesis of Purine-Based Ionic Liquids and Their Applications
title_short Synthesis of Purine-Based Ionic Liquids and Their Applications
title_sort synthesis of purine-based ionic liquids and their applications
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8620494/
https://www.ncbi.nlm.nih.gov/pubmed/34834050
http://dx.doi.org/10.3390/molecules26226958
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