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Single-crystal structure analysis of non-deuterated triglycine sulfate by neutron diffraction at 20 and 298 K: a new disorder model for the 298 K structure

Precise single-crystal structure analyses of the title compound, bis­(glycinium) sulfate–glycine (1/1), 2C(2)H(6)NO(2) (+)·SO(4) (2−)·C(2)H(5)NO(2) (or C(6)H(17)N(3)O(10)S), non-deuterated triglycine sulfate (HTGS) at 20 K and 298 K were undertaken using time-of-flight neutron diffraction data. At 2...

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Autores principales: Terasawa, Yukana, Ohhara, Takashi, Sato, Sota, Yoshida, Satoshi, Asahi, Toru
Formato: Online Artículo Texto
Lenguaje:English
Publicado: International Union of Crystallography 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8900510/
https://www.ncbi.nlm.nih.gov/pubmed/35371538
http://dx.doi.org/10.1107/S2056989022000858
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author Terasawa, Yukana
Ohhara, Takashi
Sato, Sota
Yoshida, Satoshi
Asahi, Toru
author_facet Terasawa, Yukana
Ohhara, Takashi
Sato, Sota
Yoshida, Satoshi
Asahi, Toru
author_sort Terasawa, Yukana
collection PubMed
description Precise single-crystal structure analyses of the title compound, bis­(glycinium) sulfate–glycine (1/1), 2C(2)H(6)NO(2) (+)·SO(4) (2−)·C(2)H(5)NO(2) (or C(6)H(17)N(3)O(10)S), non-deuterated triglycine sulfate (HTGS) at 20 K and 298 K were undertaken using time-of-flight neutron diffraction data. At 20 K for the O—H⋯O hydrogen bond between the glycinium cation and the zwitterionic, unprotonated glycine mol­ecule that is associated with the ferroelectric behaviour of HTGS, O—H = 1.070 (3), H⋯O = 1.408 (3) [δ = 0.338 (4)], O⋯O = 2.4777 (15) Å and O—H⋯O = 179.0 (4)°, which is in good agreement with previous studies. Two reasonable structures for the same three atoms were refined for the 298 K dataset. One is a single-minimum potential-energy model, with O—H = 1.090 (12), H⋯O = 1.361 (12) [δ = 0.271 (17)], O⋯O = 2.450 (7) Å and O—H⋯O = 179.2 (10)°, having the H atom with a large ellipticity along the bond path between the O atoms. The other is a double-minimum potential-energy model having two H atom sites with occupancies of 0.876 (8) and 0.124 (8): for the major occupancy component, O—H = 1.065 (12), H⋯O = 1.387 (12), O⋯O = 2.451 (7) Å and O—H⋯O = 178.2 (11)° and for the minor component, O—H = 1.06 (4), H⋯O = 1.41 (4), O⋯O = 2.451 (7) Å and O—H⋯O = 166 (2)°. These models did not show any significant differences in R factors. In addition, the unit-cell parameters and other structural parameters of HTGS did not show any major differences compared to those of partially deuterated TGS and fully deuterated TGS for both 20 K and 298 K.
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spelling pubmed-89005102022-03-31 Single-crystal structure analysis of non-deuterated triglycine sulfate by neutron diffraction at 20 and 298 K: a new disorder model for the 298 K structure Terasawa, Yukana Ohhara, Takashi Sato, Sota Yoshida, Satoshi Asahi, Toru Acta Crystallogr E Crystallogr Commun Research Communications Precise single-crystal structure analyses of the title compound, bis­(glycinium) sulfate–glycine (1/1), 2C(2)H(6)NO(2) (+)·SO(4) (2−)·C(2)H(5)NO(2) (or C(6)H(17)N(3)O(10)S), non-deuterated triglycine sulfate (HTGS) at 20 K and 298 K were undertaken using time-of-flight neutron diffraction data. At 20 K for the O—H⋯O hydrogen bond between the glycinium cation and the zwitterionic, unprotonated glycine mol­ecule that is associated with the ferroelectric behaviour of HTGS, O—H = 1.070 (3), H⋯O = 1.408 (3) [δ = 0.338 (4)], O⋯O = 2.4777 (15) Å and O—H⋯O = 179.0 (4)°, which is in good agreement with previous studies. Two reasonable structures for the same three atoms were refined for the 298 K dataset. One is a single-minimum potential-energy model, with O—H = 1.090 (12), H⋯O = 1.361 (12) [δ = 0.271 (17)], O⋯O = 2.450 (7) Å and O—H⋯O = 179.2 (10)°, having the H atom with a large ellipticity along the bond path between the O atoms. The other is a double-minimum potential-energy model having two H atom sites with occupancies of 0.876 (8) and 0.124 (8): for the major occupancy component, O—H = 1.065 (12), H⋯O = 1.387 (12), O⋯O = 2.451 (7) Å and O—H⋯O = 178.2 (11)° and for the minor component, O—H = 1.06 (4), H⋯O = 1.41 (4), O⋯O = 2.451 (7) Å and O—H⋯O = 166 (2)°. These models did not show any significant differences in R factors. In addition, the unit-cell parameters and other structural parameters of HTGS did not show any major differences compared to those of partially deuterated TGS and fully deuterated TGS for both 20 K and 298 K. International Union of Crystallography 2022-02-08 /pmc/articles/PMC8900510/ /pubmed/35371538 http://dx.doi.org/10.1107/S2056989022000858 Text en © Terasawa et al. 2022 https://creativecommons.org/licenses/by/4.0/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.
spellingShingle Research Communications
Terasawa, Yukana
Ohhara, Takashi
Sato, Sota
Yoshida, Satoshi
Asahi, Toru
Single-crystal structure analysis of non-deuterated triglycine sulfate by neutron diffraction at 20 and 298 K: a new disorder model for the 298 K structure
title Single-crystal structure analysis of non-deuterated triglycine sulfate by neutron diffraction at 20 and 298 K: a new disorder model for the 298 K structure
title_full Single-crystal structure analysis of non-deuterated triglycine sulfate by neutron diffraction at 20 and 298 K: a new disorder model for the 298 K structure
title_fullStr Single-crystal structure analysis of non-deuterated triglycine sulfate by neutron diffraction at 20 and 298 K: a new disorder model for the 298 K structure
title_full_unstemmed Single-crystal structure analysis of non-deuterated triglycine sulfate by neutron diffraction at 20 and 298 K: a new disorder model for the 298 K structure
title_short Single-crystal structure analysis of non-deuterated triglycine sulfate by neutron diffraction at 20 and 298 K: a new disorder model for the 298 K structure
title_sort single-crystal structure analysis of non-deuterated triglycine sulfate by neutron diffraction at 20 and 298 k: a new disorder model for the 298 k structure
topic Research Communications
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8900510/
https://www.ncbi.nlm.nih.gov/pubmed/35371538
http://dx.doi.org/10.1107/S2056989022000858
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