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Formamidinium iodide: crystal structure and phase transitions

At a temperature of 100 K, CH(5)N(2) (+)·I(−) (I), crystallizes in the monoclinic space group P2(1)/c. The formamidinium cation adopts a planar symmetrical structure [the r.m.s. deviation is 0.002 Å, and the C—N bond lengths are 1.301 (7) and 1.309 (8) Å]. The iodide anion does not lie within the ca...

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Autores principales: Petrov, Andrey A., Goodilin, Eugene A., Tarasov, Alexey B., Lazarenko, Vladimir A., Dorovatovskii, Pavel V., Khrustalev, Victor N.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: International Union of Crystallography 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5382624/
https://www.ncbi.nlm.nih.gov/pubmed/28435723
http://dx.doi.org/10.1107/S205698901700425X
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author Petrov, Andrey A.
Goodilin, Eugene A.
Tarasov, Alexey B.
Lazarenko, Vladimir A.
Dorovatovskii, Pavel V.
Khrustalev, Victor N.
author_facet Petrov, Andrey A.
Goodilin, Eugene A.
Tarasov, Alexey B.
Lazarenko, Vladimir A.
Dorovatovskii, Pavel V.
Khrustalev, Victor N.
author_sort Petrov, Andrey A.
collection PubMed
description At a temperature of 100 K, CH(5)N(2) (+)·I(−) (I), crystallizes in the monoclinic space group P2(1)/c. The formamidinium cation adopts a planar symmetrical structure [the r.m.s. deviation is 0.002 Å, and the C—N bond lengths are 1.301 (7) and 1.309 (8) Å]. The iodide anion does not lie within the cation plane, but deviates from it by 0.643 (10) Å. The cation and anion of I form a tight ionic pair by a strong N—H⋯I hydrogen bond. In the crystal of I, the tight ionic pairs form hydrogen-bonded zigzag-like chains propagating toward [20-1] via strong N—H⋯I hydrogen bonds. The hydrogen-bonded chains are further packed in stacks along [100]. The thermal behaviour of I was studied by different physicochemical methods (thermogravimetry, differential scanning calorimetry and powder diffraction). Differential scanning calorimetry revealed three narrow endothermic peaks at 346, 387 and 525 K, and one broad endothermic peak at ∼605 K. The first and second peaks are related to solid–solid phase transitions, while the third and fourth peaks are attributed to the melting and decomposition of I. The enthalpies of the phase transitions at 346 and 387 K are estimated as 2.60 and 2.75 kJ mol(−1), respectively. The X-ray powder diffraction data collected at different temperatures indicate the existence of I as the monoclinic (100–346 K), ortho­rhom­bic (346–387 K) and cubic (387–525 K) polymorphic modifications.
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spelling pubmed-53826242017-04-21 Formamidinium iodide: crystal structure and phase transitions Petrov, Andrey A. Goodilin, Eugene A. Tarasov, Alexey B. Lazarenko, Vladimir A. Dorovatovskii, Pavel V. Khrustalev, Victor N. Acta Crystallogr E Crystallogr Commun Research Communications At a temperature of 100 K, CH(5)N(2) (+)·I(−) (I), crystallizes in the monoclinic space group P2(1)/c. The formamidinium cation adopts a planar symmetrical structure [the r.m.s. deviation is 0.002 Å, and the C—N bond lengths are 1.301 (7) and 1.309 (8) Å]. The iodide anion does not lie within the cation plane, but deviates from it by 0.643 (10) Å. The cation and anion of I form a tight ionic pair by a strong N—H⋯I hydrogen bond. In the crystal of I, the tight ionic pairs form hydrogen-bonded zigzag-like chains propagating toward [20-1] via strong N—H⋯I hydrogen bonds. The hydrogen-bonded chains are further packed in stacks along [100]. The thermal behaviour of I was studied by different physicochemical methods (thermogravimetry, differential scanning calorimetry and powder diffraction). Differential scanning calorimetry revealed three narrow endothermic peaks at 346, 387 and 525 K, and one broad endothermic peak at ∼605 K. The first and second peaks are related to solid–solid phase transitions, while the third and fourth peaks are attributed to the melting and decomposition of I. The enthalpies of the phase transitions at 346 and 387 K are estimated as 2.60 and 2.75 kJ mol(−1), respectively. The X-ray powder diffraction data collected at different temperatures indicate the existence of I as the monoclinic (100–346 K), ortho­rhom­bic (346–387 K) and cubic (387–525 K) polymorphic modifications. International Union of Crystallography 2017-03-24 /pmc/articles/PMC5382624/ /pubmed/28435723 http://dx.doi.org/10.1107/S205698901700425X Text en © Petrov et al. 2017 http://creativecommons.org/licenses/by/2.0/uk/ This is an open-access article distributed under the terms of the Creative Commons Attribution (CC-BY) Licence, which permits unrestricted use, distribution, and reproduction in any medium, provided the original authors and source are cited.http://creativecommons.org/licenses/by/2.0/uk/
spellingShingle Research Communications
Petrov, Andrey A.
Goodilin, Eugene A.
Tarasov, Alexey B.
Lazarenko, Vladimir A.
Dorovatovskii, Pavel V.
Khrustalev, Victor N.
Formamidinium iodide: crystal structure and phase transitions
title Formamidinium iodide: crystal structure and phase transitions
title_full Formamidinium iodide: crystal structure and phase transitions
title_fullStr Formamidinium iodide: crystal structure and phase transitions
title_full_unstemmed Formamidinium iodide: crystal structure and phase transitions
title_short Formamidinium iodide: crystal structure and phase transitions
title_sort formamidinium iodide: crystal structure and phase transitions
topic Research Communications
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5382624/
https://www.ncbi.nlm.nih.gov/pubmed/28435723
http://dx.doi.org/10.1107/S205698901700425X
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