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Evaluation of correlated studies using liquid cell and cryo‐transmission electron microscopy: Hydration of calcium sulphate and the phase transformation pathways of bassanite to gypsum

Insight into the nucleation, growth and phase transformations of calcium sulphate could improve the performance of construction materials, reduce scaling in industrial processes and aid understanding of its formation in the natural environment. Recent studies have suggested that the calcium sulphate...

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Autores principales: Ilett, M., Freeman, H. M., Aslam, Z., Galloway, J. M., Klebl, D. P., Muench, S. P., McPherson, I. J., Cespedes, O., Kim, Y‐Y., Meldrum, F. C., Yeandel, S. R., Freeman, C. L., Harding, J. H., Brydson, R. M. D.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10084335/
https://www.ncbi.nlm.nih.gov/pubmed/35348205
http://dx.doi.org/10.1111/jmi.13102
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author Ilett, M.
Freeman, H. M.
Aslam, Z.
Galloway, J. M.
Klebl, D. P.
Muench, S. P.
McPherson, I. J.
Cespedes, O.
Kim, Y‐Y.
Meldrum, F. C.
Yeandel, S. R.
Freeman, C. L.
Harding, J. H.
Brydson, R. M. D.
author_facet Ilett, M.
Freeman, H. M.
Aslam, Z.
Galloway, J. M.
Klebl, D. P.
Muench, S. P.
McPherson, I. J.
Cespedes, O.
Kim, Y‐Y.
Meldrum, F. C.
Yeandel, S. R.
Freeman, C. L.
Harding, J. H.
Brydson, R. M. D.
author_sort Ilett, M.
collection PubMed
description Insight into the nucleation, growth and phase transformations of calcium sulphate could improve the performance of construction materials, reduce scaling in industrial processes and aid understanding of its formation in the natural environment. Recent studies have suggested that the calcium sulphate pseudo polymorph, gypsum (CaSO(4)·2H(2)O) can form in aqueous solution via a bassanite (CaSO(4)·0.5H(2)O) intermediate. Some in situ experimental work has also suggested that the transformation of bassanite to gypsum can occur through an oriented assembly mechanism. In this work, we have exploited liquid cell transmission electron microscopy (LCTEM) to study the transformation of bassanite to gypsum in an undersaturated aqueous solution of calcium sulphate. This was benchmarked against cryogenic TEM (cryo‐TEM) studies to validate internally the data obtained from the two microscopy techniques. When coupled with Raman spectroscopy, the real‐time data generated by LCTEM, and structural data obtained from cryo‐TEM show that bassanite can transform to gypsum via more than one pathway, the predominant one being dissolution/reprecipitation. Comparisons between LCTEM and cryo‐TEM also show that the transformation is slower within the confined region of the liquid cell as compared to a bulk solution. This work highlights the important role of a correlated microscopy approach for the study of dynamic processes such as crystallisation from solution if we are to extract true mechanistic understanding.
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spelling pubmed-100843352023-04-11 Evaluation of correlated studies using liquid cell and cryo‐transmission electron microscopy: Hydration of calcium sulphate and the phase transformation pathways of bassanite to gypsum Ilett, M. Freeman, H. M. Aslam, Z. Galloway, J. M. Klebl, D. P. Muench, S. P. McPherson, I. J. Cespedes, O. Kim, Y‐Y. Meldrum, F. C. Yeandel, S. R. Freeman, C. L. Harding, J. H. Brydson, R. M. D. J Microsc Themed Issue Articles Insight into the nucleation, growth and phase transformations of calcium sulphate could improve the performance of construction materials, reduce scaling in industrial processes and aid understanding of its formation in the natural environment. Recent studies have suggested that the calcium sulphate pseudo polymorph, gypsum (CaSO(4)·2H(2)O) can form in aqueous solution via a bassanite (CaSO(4)·0.5H(2)O) intermediate. Some in situ experimental work has also suggested that the transformation of bassanite to gypsum can occur through an oriented assembly mechanism. In this work, we have exploited liquid cell transmission electron microscopy (LCTEM) to study the transformation of bassanite to gypsum in an undersaturated aqueous solution of calcium sulphate. This was benchmarked against cryogenic TEM (cryo‐TEM) studies to validate internally the data obtained from the two microscopy techniques. When coupled with Raman spectroscopy, the real‐time data generated by LCTEM, and structural data obtained from cryo‐TEM show that bassanite can transform to gypsum via more than one pathway, the predominant one being dissolution/reprecipitation. Comparisons between LCTEM and cryo‐TEM also show that the transformation is slower within the confined region of the liquid cell as compared to a bulk solution. This work highlights the important role of a correlated microscopy approach for the study of dynamic processes such as crystallisation from solution if we are to extract true mechanistic understanding. John Wiley and Sons Inc. 2022-04-18 2022-12 /pmc/articles/PMC10084335/ /pubmed/35348205 http://dx.doi.org/10.1111/jmi.13102 Text en © 2022 The Authors. Journal of Microscopy published by John Wiley & Sons Ltd on behalf of Royal Microscopical Society. https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Themed Issue Articles
Ilett, M.
Freeman, H. M.
Aslam, Z.
Galloway, J. M.
Klebl, D. P.
Muench, S. P.
McPherson, I. J.
Cespedes, O.
Kim, Y‐Y.
Meldrum, F. C.
Yeandel, S. R.
Freeman, C. L.
Harding, J. H.
Brydson, R. M. D.
Evaluation of correlated studies using liquid cell and cryo‐transmission electron microscopy: Hydration of calcium sulphate and the phase transformation pathways of bassanite to gypsum
title Evaluation of correlated studies using liquid cell and cryo‐transmission electron microscopy: Hydration of calcium sulphate and the phase transformation pathways of bassanite to gypsum
title_full Evaluation of correlated studies using liquid cell and cryo‐transmission electron microscopy: Hydration of calcium sulphate and the phase transformation pathways of bassanite to gypsum
title_fullStr Evaluation of correlated studies using liquid cell and cryo‐transmission electron microscopy: Hydration of calcium sulphate and the phase transformation pathways of bassanite to gypsum
title_full_unstemmed Evaluation of correlated studies using liquid cell and cryo‐transmission electron microscopy: Hydration of calcium sulphate and the phase transformation pathways of bassanite to gypsum
title_short Evaluation of correlated studies using liquid cell and cryo‐transmission electron microscopy: Hydration of calcium sulphate and the phase transformation pathways of bassanite to gypsum
title_sort evaluation of correlated studies using liquid cell and cryo‐transmission electron microscopy: hydration of calcium sulphate and the phase transformation pathways of bassanite to gypsum
topic Themed Issue Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10084335/
https://www.ncbi.nlm.nih.gov/pubmed/35348205
http://dx.doi.org/10.1111/jmi.13102
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