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A spectroscopic and computational study of Al(III) complexes in cryolite melts: Effect of cation nature

Lithium, sodium and potassium cryolite melts are probed by Raman spectroscopy in a wide range of the melt composition. The experimental data demonstrate a slight red shift of main peaks and a decrease of their half-widths in the row Li(+), Na(+), K(+). Quantum chemical modelling of the systems is pe...

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Autores principales: Nazmutdinov, Renat R., Zinkicheva, Tamara T., Vassiliev, Sergey Yu., Glukhov, Dmitrii V., Tsirlina, Galina A., Probst, Michael
Formato: Online Artículo Texto
Lenguaje:English
Publicado: North Holland Publishing 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3568921/
https://www.ncbi.nlm.nih.gov/pubmed/23408115
http://dx.doi.org/10.1016/j.chemphys.2012.11.006
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author Nazmutdinov, Renat R.
Zinkicheva, Tamara T.
Vassiliev, Sergey Yu.
Glukhov, Dmitrii V.
Tsirlina, Galina A.
Probst, Michael
author_facet Nazmutdinov, Renat R.
Zinkicheva, Tamara T.
Vassiliev, Sergey Yu.
Glukhov, Dmitrii V.
Tsirlina, Galina A.
Probst, Michael
author_sort Nazmutdinov, Renat R.
collection PubMed
description Lithium, sodium and potassium cryolite melts are probed by Raman spectroscopy in a wide range of the melt composition. The experimental data demonstrate a slight red shift of main peaks and a decrease of their half-widths in the row Li(+), Na(+), K(+). Quantum chemical modelling of the systems is performed at the density functional theory level. The ionic environment is found to play a crucial role in the energy of fluoroaluminates. Potential energy surfaces describing the formation/dissociation of certain complex species, as well as model Raman spectra are constructed and compared with those obtained recently for sodium containing cryolite melts (R.R. Nazmutdinov, et al., Spectrochim, Acta A 75 (2010) 1244.). The calculations show that the cation nature affects the geometry of the ionic associates as well as the equilibrium and kinetics of the complexation processes. This enables to interpret both original experimental data and those reported in literature.
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spelling pubmed-35689212013-02-11 A spectroscopic and computational study of Al(III) complexes in cryolite melts: Effect of cation nature Nazmutdinov, Renat R. Zinkicheva, Tamara T. Vassiliev, Sergey Yu. Glukhov, Dmitrii V. Tsirlina, Galina A. Probst, Michael Chem Phys Article Lithium, sodium and potassium cryolite melts are probed by Raman spectroscopy in a wide range of the melt composition. The experimental data demonstrate a slight red shift of main peaks and a decrease of their half-widths in the row Li(+), Na(+), K(+). Quantum chemical modelling of the systems is performed at the density functional theory level. The ionic environment is found to play a crucial role in the energy of fluoroaluminates. Potential energy surfaces describing the formation/dissociation of certain complex species, as well as model Raman spectra are constructed and compared with those obtained recently for sodium containing cryolite melts (R.R. Nazmutdinov, et al., Spectrochim, Acta A 75 (2010) 1244.). The calculations show that the cation nature affects the geometry of the ionic associates as well as the equilibrium and kinetics of the complexation processes. This enables to interpret both original experimental data and those reported in literature. North Holland Publishing 2013-02-01 /pmc/articles/PMC3568921/ /pubmed/23408115 http://dx.doi.org/10.1016/j.chemphys.2012.11.006 Text en © 2013 Elsevier B.V. https://creativecommons.org/licenses/by-nc-nd/3.0/ Open Access under CC BY-NC-ND 3.0 (https://creativecommons.org/licenses/by-nc-nd/3.0/) license
spellingShingle Article
Nazmutdinov, Renat R.
Zinkicheva, Tamara T.
Vassiliev, Sergey Yu.
Glukhov, Dmitrii V.
Tsirlina, Galina A.
Probst, Michael
A spectroscopic and computational study of Al(III) complexes in cryolite melts: Effect of cation nature
title A spectroscopic and computational study of Al(III) complexes in cryolite melts: Effect of cation nature
title_full A spectroscopic and computational study of Al(III) complexes in cryolite melts: Effect of cation nature
title_fullStr A spectroscopic and computational study of Al(III) complexes in cryolite melts: Effect of cation nature
title_full_unstemmed A spectroscopic and computational study of Al(III) complexes in cryolite melts: Effect of cation nature
title_short A spectroscopic and computational study of Al(III) complexes in cryolite melts: Effect of cation nature
title_sort spectroscopic and computational study of al(iii) complexes in cryolite melts: effect of cation nature
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3568921/
https://www.ncbi.nlm.nih.gov/pubmed/23408115
http://dx.doi.org/10.1016/j.chemphys.2012.11.006
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