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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...
Autores principales: | , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
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International Union of Crystallography
2022
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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. |
format | Online Article Text |
id | pubmed-8900510 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2022 |
publisher | International Union of Crystallography |
record_format | MEDLINE/PubMed |
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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