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Aqueous Flow Reactor and Vapour‐Assisted Synthesis of Aluminium Dicarboxylate Metal–Organic Frameworks with Tuneable Water Sorption Properties

Energy‐efficient indoors temperature and humidity control can be realised by using the reversible adsorption and desorption of water in porous materials. Stable microporous aluminium‐based metal–organic frameworks (MOFs) present promising water sorption properties for this goal. The development of s...

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Autores principales: Stassin, Timothée, Waitschat, Steve, Heidenreich, Niclas, Reinsch, Helge, Pluschkell, Finn, Kravchenko, Dmitry, Marreiros, João, Stassen, Ivo, van Dinter, Jonas, Verbeke, Rhea, Dickmann, Marcel, Egger, Werner, Vankelecom, Ivo, De Vos, Dirk, Ameloot, Rob, Stock, Norbert
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7496088/
https://www.ncbi.nlm.nih.gov/pubmed/32476184
http://dx.doi.org/10.1002/chem.202001661
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author Stassin, Timothée
Waitschat, Steve
Heidenreich, Niclas
Reinsch, Helge
Pluschkell, Finn
Kravchenko, Dmitry
Marreiros, João
Stassen, Ivo
van Dinter, Jonas
Verbeke, Rhea
Dickmann, Marcel
Egger, Werner
Vankelecom, Ivo
De Vos, Dirk
Ameloot, Rob
Stock, Norbert
author_facet Stassin, Timothée
Waitschat, Steve
Heidenreich, Niclas
Reinsch, Helge
Pluschkell, Finn
Kravchenko, Dmitry
Marreiros, João
Stassen, Ivo
van Dinter, Jonas
Verbeke, Rhea
Dickmann, Marcel
Egger, Werner
Vankelecom, Ivo
De Vos, Dirk
Ameloot, Rob
Stock, Norbert
author_sort Stassin, Timothée
collection PubMed
description Energy‐efficient indoors temperature and humidity control can be realised by using the reversible adsorption and desorption of water in porous materials. Stable microporous aluminium‐based metal–organic frameworks (MOFs) present promising water sorption properties for this goal. The development of synthesis routes that make use of available and affordable building blocks and avoid the use of organic solvents is crucial to advance this field. In this work, two scalable synthesis routes under mild reaction conditions were developed for aluminium‐based MOFs: (1) in aqueous solutions using a continuous‐flow reactor and (2) through the vapour‐assisted conversion of solid precursors. Fumaric acid, its methylated analogue mesaconic acid, as well as mixtures of the two were used as linkers to obtain polymorph materials with tuneable water sorption properties. The synthesis conditions determine the crystal structure and either the MIL‐53 or MIL‐68 type structure with square‐grid or kagome‐grid topology, respectively, is formed. Fine‐tuning resulted in new MOF materials thus far inaccessible through conventional synthesis routes. Furthermore, by varying the linker ratio, the water sorption properties can be continuously adjusted while retaining the sigmoidal isotherm shape advantageous for heat transformation and room climatisation applications.
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spelling pubmed-74960882020-09-25 Aqueous Flow Reactor and Vapour‐Assisted Synthesis of Aluminium Dicarboxylate Metal–Organic Frameworks with Tuneable Water Sorption Properties Stassin, Timothée Waitschat, Steve Heidenreich, Niclas Reinsch, Helge Pluschkell, Finn Kravchenko, Dmitry Marreiros, João Stassen, Ivo van Dinter, Jonas Verbeke, Rhea Dickmann, Marcel Egger, Werner Vankelecom, Ivo De Vos, Dirk Ameloot, Rob Stock, Norbert Chemistry Full Papers Energy‐efficient indoors temperature and humidity control can be realised by using the reversible adsorption and desorption of water in porous materials. Stable microporous aluminium‐based metal–organic frameworks (MOFs) present promising water sorption properties for this goal. The development of synthesis routes that make use of available and affordable building blocks and avoid the use of organic solvents is crucial to advance this field. In this work, two scalable synthesis routes under mild reaction conditions were developed for aluminium‐based MOFs: (1) in aqueous solutions using a continuous‐flow reactor and (2) through the vapour‐assisted conversion of solid precursors. Fumaric acid, its methylated analogue mesaconic acid, as well as mixtures of the two were used as linkers to obtain polymorph materials with tuneable water sorption properties. The synthesis conditions determine the crystal structure and either the MIL‐53 or MIL‐68 type structure with square‐grid or kagome‐grid topology, respectively, is formed. Fine‐tuning resulted in new MOF materials thus far inaccessible through conventional synthesis routes. Furthermore, by varying the linker ratio, the water sorption properties can be continuously adjusted while retaining the sigmoidal isotherm shape advantageous for heat transformation and room climatisation applications. John Wiley and Sons Inc. 2020-07-27 2020-08-21 /pmc/articles/PMC7496088/ /pubmed/32476184 http://dx.doi.org/10.1002/chem.202001661 Text en © 2020 The Authors. Published by Wiley-VCH Verlag GmbH & Co. KGaA This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Full Papers
Stassin, Timothée
Waitschat, Steve
Heidenreich, Niclas
Reinsch, Helge
Pluschkell, Finn
Kravchenko, Dmitry
Marreiros, João
Stassen, Ivo
van Dinter, Jonas
Verbeke, Rhea
Dickmann, Marcel
Egger, Werner
Vankelecom, Ivo
De Vos, Dirk
Ameloot, Rob
Stock, Norbert
Aqueous Flow Reactor and Vapour‐Assisted Synthesis of Aluminium Dicarboxylate Metal–Organic Frameworks with Tuneable Water Sorption Properties
title Aqueous Flow Reactor and Vapour‐Assisted Synthesis of Aluminium Dicarboxylate Metal–Organic Frameworks with Tuneable Water Sorption Properties
title_full Aqueous Flow Reactor and Vapour‐Assisted Synthesis of Aluminium Dicarboxylate Metal–Organic Frameworks with Tuneable Water Sorption Properties
title_fullStr Aqueous Flow Reactor and Vapour‐Assisted Synthesis of Aluminium Dicarboxylate Metal–Organic Frameworks with Tuneable Water Sorption Properties
title_full_unstemmed Aqueous Flow Reactor and Vapour‐Assisted Synthesis of Aluminium Dicarboxylate Metal–Organic Frameworks with Tuneable Water Sorption Properties
title_short Aqueous Flow Reactor and Vapour‐Assisted Synthesis of Aluminium Dicarboxylate Metal–Organic Frameworks with Tuneable Water Sorption Properties
title_sort aqueous flow reactor and vapour‐assisted synthesis of aluminium dicarboxylate metal–organic frameworks with tuneable water sorption properties
topic Full Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7496088/
https://www.ncbi.nlm.nih.gov/pubmed/32476184
http://dx.doi.org/10.1002/chem.202001661
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