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A New Solid-State Proton Conductor: The Salt Hydrate Based on Imidazolium and 12-Tungstophosphate

[Image: see text] We report the structure and charge transport properties of a novel solid-state proton conductor obtained by acid–base chemistry via proton transfer from 12-tungstophosphoric acid to imidazole. The resulting material (henceforth named Imid(3)WP) is a solid salt hydrate that, at room...

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Autores principales: Martinelli, Anna, Otero-Mato, José M., Garaga, Mounesha N., Elamin, Khalid, Rahman, Seikh Mohammad Habibur, Zwanziger, Josef W., Werner-Zwanziger, Ulrike, Varela, Luis M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2021
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8414554/
https://www.ncbi.nlm.nih.gov/pubmed/34406757
http://dx.doi.org/10.1021/jacs.1c06656
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author Martinelli, Anna
Otero-Mato, José M.
Garaga, Mounesha N.
Elamin, Khalid
Rahman, Seikh Mohammad Habibur
Zwanziger, Josef W.
Werner-Zwanziger, Ulrike
Varela, Luis M.
author_facet Martinelli, Anna
Otero-Mato, José M.
Garaga, Mounesha N.
Elamin, Khalid
Rahman, Seikh Mohammad Habibur
Zwanziger, Josef W.
Werner-Zwanziger, Ulrike
Varela, Luis M.
author_sort Martinelli, Anna
collection PubMed
description [Image: see text] We report the structure and charge transport properties of a novel solid-state proton conductor obtained by acid–base chemistry via proton transfer from 12-tungstophosphoric acid to imidazole. The resulting material (henceforth named Imid(3)WP) is a solid salt hydrate that, at room temperature, includes four water molecules per structural unit. To our knowledge, this is the first attempt to tune the properties of a heteropolyacid-based solid-state proton conductor by means of a mixture of water and imidazole, interpolating between water-based and ionic liquid-based proton conductors of high thermal and electrochemical stability. The proton conductivity of Imid(3)WP·4H(2)O measured at truly anhydrous conditions reads 0.8 × 10(–6) S cm(–1) at 322 K, which is higher than the conductivity reported for any other related salt hydrate, despite the lower hydration. In the pseudoanhydrous state, that is, for Imid(3)WP·2H(2)O, the proton conductivity is still remarkable and, judging from the low activation energy (E(a) = 0.26 eV), attributed to structural diffusion of protons. From complementary X-ray diffraction data, vibrational spectroscopy, and solid-state NMR experiments, the local structure of this salt hydrate was resolved, with imidazolium cations preferably orienting flat on the surface of the tungstophosphate anions, thus achieving a densely packed solid material, and water molecules of hydration that establish extremely strong hydrogen bonds. Computational results confirm these structural details and also evidence that the path of lowest energy for the proton transfer involves primarily imidazole and water molecules, while the proximate Keggin anion contributes with reducing the energy barrier for this particular pathway.
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spelling pubmed-84145542021-09-03 A New Solid-State Proton Conductor: The Salt Hydrate Based on Imidazolium and 12-Tungstophosphate Martinelli, Anna Otero-Mato, José M. Garaga, Mounesha N. Elamin, Khalid Rahman, Seikh Mohammad Habibur Zwanziger, Josef W. Werner-Zwanziger, Ulrike Varela, Luis M. J Am Chem Soc [Image: see text] We report the structure and charge transport properties of a novel solid-state proton conductor obtained by acid–base chemistry via proton transfer from 12-tungstophosphoric acid to imidazole. The resulting material (henceforth named Imid(3)WP) is a solid salt hydrate that, at room temperature, includes four water molecules per structural unit. To our knowledge, this is the first attempt to tune the properties of a heteropolyacid-based solid-state proton conductor by means of a mixture of water and imidazole, interpolating between water-based and ionic liquid-based proton conductors of high thermal and electrochemical stability. The proton conductivity of Imid(3)WP·4H(2)O measured at truly anhydrous conditions reads 0.8 × 10(–6) S cm(–1) at 322 K, which is higher than the conductivity reported for any other related salt hydrate, despite the lower hydration. In the pseudoanhydrous state, that is, for Imid(3)WP·2H(2)O, the proton conductivity is still remarkable and, judging from the low activation energy (E(a) = 0.26 eV), attributed to structural diffusion of protons. From complementary X-ray diffraction data, vibrational spectroscopy, and solid-state NMR experiments, the local structure of this salt hydrate was resolved, with imidazolium cations preferably orienting flat on the surface of the tungstophosphate anions, thus achieving a densely packed solid material, and water molecules of hydration that establish extremely strong hydrogen bonds. Computational results confirm these structural details and also evidence that the path of lowest energy for the proton transfer involves primarily imidazole and water molecules, while the proximate Keggin anion contributes with reducing the energy barrier for this particular pathway. American Chemical Society 2021-08-18 2021-09-01 /pmc/articles/PMC8414554/ /pubmed/34406757 http://dx.doi.org/10.1021/jacs.1c06656 Text en © 2021 The Authors. Published by American Chemical Society https://creativecommons.org/licenses/by/4.0/Permits the broadest form of re-use including for commercial purposes, provided that author attribution and integrity are maintained (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Martinelli, Anna
Otero-Mato, José M.
Garaga, Mounesha N.
Elamin, Khalid
Rahman, Seikh Mohammad Habibur
Zwanziger, Josef W.
Werner-Zwanziger, Ulrike
Varela, Luis M.
A New Solid-State Proton Conductor: The Salt Hydrate Based on Imidazolium and 12-Tungstophosphate
title A New Solid-State Proton Conductor: The Salt Hydrate Based on Imidazolium and 12-Tungstophosphate
title_full A New Solid-State Proton Conductor: The Salt Hydrate Based on Imidazolium and 12-Tungstophosphate
title_fullStr A New Solid-State Proton Conductor: The Salt Hydrate Based on Imidazolium and 12-Tungstophosphate
title_full_unstemmed A New Solid-State Proton Conductor: The Salt Hydrate Based on Imidazolium and 12-Tungstophosphate
title_short A New Solid-State Proton Conductor: The Salt Hydrate Based on Imidazolium and 12-Tungstophosphate
title_sort new solid-state proton conductor: the salt hydrate based on imidazolium and 12-tungstophosphate
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8414554/
https://www.ncbi.nlm.nih.gov/pubmed/34406757
http://dx.doi.org/10.1021/jacs.1c06656
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