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Polymorphism and Conformational Equilibrium of Nitro-Acetophenone in Solid State and under Matrix Conditions

Conformational and polymorphic states in the nitro-derivative of o-hydroxy acetophenone have been studied by experimental and theoretical methods. The potential energy curves for the rotation of the nitro group and isomerization of the hydroxyl group have been calculated by density functional theory...

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Autores principales: Hetmańczyk, Łukasz, Szklarz, Przemysław, Kwocz, Agnieszka, Wierzejewska, Maria, Pagacz-Kostrzewa, Magdalena, Melnikov, Mikhail Ya., Tolstoy, Peter M., Filarowski, Aleksander
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8197010/
https://www.ncbi.nlm.nih.gov/pubmed/34067498
http://dx.doi.org/10.3390/molecules26113109
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author Hetmańczyk, Łukasz
Szklarz, Przemysław
Kwocz, Agnieszka
Wierzejewska, Maria
Pagacz-Kostrzewa, Magdalena
Melnikov, Mikhail Ya.
Tolstoy, Peter M.
Filarowski, Aleksander
author_facet Hetmańczyk, Łukasz
Szklarz, Przemysław
Kwocz, Agnieszka
Wierzejewska, Maria
Pagacz-Kostrzewa, Magdalena
Melnikov, Mikhail Ya.
Tolstoy, Peter M.
Filarowski, Aleksander
author_sort Hetmańczyk, Łukasz
collection PubMed
description Conformational and polymorphic states in the nitro-derivative of o-hydroxy acetophenone have been studied by experimental and theoretical methods. The potential energy curves for the rotation of the nitro group and isomerization of the hydroxyl group have been calculated by density functional theory (DFT) to estimate the barriers of the conformational changes. Two polymorphic forms of the studied compound were obtained by the slow and fast evaporation of polar and non-polar solutions, respectively. Both of the polymorphs were investigated by Infrared-Red (IR) and Raman spectroscopy, Incoherent Inelastic Neutron Scattering (IINS), X-ray diffraction, nuclear quadrupole resonance spectroscopy (NQR), differential scanning calorimetry (DSC) and density functional theory (DFT) methods. In one of the polymorphs, the existence of a phase transition was shown. The position of the nitro group and its impact on the crystal cell of the studied compound were analyzed. The conformational equilibrium determined by the reorientation of the hydroxyl group was observed under argon matrix isolation. An analysis of vibrational spectra was achieved for the interpretation of conformational equilibrium. The infrared spectra were measured in a wide temperature range to reveal the spectral bands that were the most sensitive to the phase transition and conformational equilibrium. The results showed the interrelations between intramolecular processes and macroscopic phenomena in the studied compound.
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spelling pubmed-81970102021-06-13 Polymorphism and Conformational Equilibrium of Nitro-Acetophenone in Solid State and under Matrix Conditions Hetmańczyk, Łukasz Szklarz, Przemysław Kwocz, Agnieszka Wierzejewska, Maria Pagacz-Kostrzewa, Magdalena Melnikov, Mikhail Ya. Tolstoy, Peter M. Filarowski, Aleksander Molecules Article Conformational and polymorphic states in the nitro-derivative of o-hydroxy acetophenone have been studied by experimental and theoretical methods. The potential energy curves for the rotation of the nitro group and isomerization of the hydroxyl group have been calculated by density functional theory (DFT) to estimate the barriers of the conformational changes. Two polymorphic forms of the studied compound were obtained by the slow and fast evaporation of polar and non-polar solutions, respectively. Both of the polymorphs were investigated by Infrared-Red (IR) and Raman spectroscopy, Incoherent Inelastic Neutron Scattering (IINS), X-ray diffraction, nuclear quadrupole resonance spectroscopy (NQR), differential scanning calorimetry (DSC) and density functional theory (DFT) methods. In one of the polymorphs, the existence of a phase transition was shown. The position of the nitro group and its impact on the crystal cell of the studied compound were analyzed. The conformational equilibrium determined by the reorientation of the hydroxyl group was observed under argon matrix isolation. An analysis of vibrational spectra was achieved for the interpretation of conformational equilibrium. The infrared spectra were measured in a wide temperature range to reveal the spectral bands that were the most sensitive to the phase transition and conformational equilibrium. The results showed the interrelations between intramolecular processes and macroscopic phenomena in the studied compound. MDPI 2021-05-22 /pmc/articles/PMC8197010/ /pubmed/34067498 http://dx.doi.org/10.3390/molecules26113109 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
Hetmańczyk, Łukasz
Szklarz, Przemysław
Kwocz, Agnieszka
Wierzejewska, Maria
Pagacz-Kostrzewa, Magdalena
Melnikov, Mikhail Ya.
Tolstoy, Peter M.
Filarowski, Aleksander
Polymorphism and Conformational Equilibrium of Nitro-Acetophenone in Solid State and under Matrix Conditions
title Polymorphism and Conformational Equilibrium of Nitro-Acetophenone in Solid State and under Matrix Conditions
title_full Polymorphism and Conformational Equilibrium of Nitro-Acetophenone in Solid State and under Matrix Conditions
title_fullStr Polymorphism and Conformational Equilibrium of Nitro-Acetophenone in Solid State and under Matrix Conditions
title_full_unstemmed Polymorphism and Conformational Equilibrium of Nitro-Acetophenone in Solid State and under Matrix Conditions
title_short Polymorphism and Conformational Equilibrium of Nitro-Acetophenone in Solid State and under Matrix Conditions
title_sort polymorphism and conformational equilibrium of nitro-acetophenone in solid state and under matrix conditions
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8197010/
https://www.ncbi.nlm.nih.gov/pubmed/34067498
http://dx.doi.org/10.3390/molecules26113109
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