Cargando…

The Rich Solid-State Phase Behavior of dl-Aminoheptanoic Acid: Five Polymorphic Forms and Their Phase Transitions

[Image: see text] The rich landscape of enantiotropically related polymorphic forms and their solid-state phase transitions of dl-2-aminoheptanoic acid (dl-AHE) has been explored using a range of complementary characterization techniques, and is largely exemplary of the polymorphic behavior of linea...

Descripción completa

Detalles Bibliográficos
Autores principales: Smets, Mireille M. H., Pitak, Mateusz B., Cadden, Joseph, Kip, Vincent R., de Wijs, Gilles A., van Eck, Ernst R. H., Tinnemans, Paul, Meekes, Hugo, Vlieg, Elias, Coles, Simon J., Cuppen, Herma M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2017
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6150639/
https://www.ncbi.nlm.nih.gov/pubmed/30258304
http://dx.doi.org/10.1021/acs.cgd.7b01175
_version_ 1783357025858617344
author Smets, Mireille M. H.
Pitak, Mateusz B.
Cadden, Joseph
Kip, Vincent R.
de Wijs, Gilles A.
van Eck, Ernst R. H.
Tinnemans, Paul
Meekes, Hugo
Vlieg, Elias
Coles, Simon J.
Cuppen, Herma M.
author_facet Smets, Mireille M. H.
Pitak, Mateusz B.
Cadden, Joseph
Kip, Vincent R.
de Wijs, Gilles A.
van Eck, Ernst R. H.
Tinnemans, Paul
Meekes, Hugo
Vlieg, Elias
Coles, Simon J.
Cuppen, Herma M.
author_sort Smets, Mireille M. H.
collection PubMed
description [Image: see text] The rich landscape of enantiotropically related polymorphic forms and their solid-state phase transitions of dl-2-aminoheptanoic acid (dl-AHE) has been explored using a range of complementary characterization techniques, and is largely exemplary of the polymorphic behavior of linear aliphatic amino acids. As many as five new polymorphic forms were found, connected by four fully reversible solid-state phase transitions. Two low temperature forms were refined in a high Z′ crystal structure, which is a new phenomenon for linear aliphatic amino acids. All five structures consist of two-dimensional hydrogen-bonded bilayers interconnected by weak van der Waals interactions. The single-crystal-to-single-crystal phase transitions involve shifts of bilayers and/or conformational changes in the aliphatic chain. Compared to two similar phase transitions of the related amino acid dl-norleucine, the enthalpies of transition and NMR chemical shift differences are notably smaller in dl-aminoheptanoic acid. This is explained to be a result of both the nature of the conformational changes and the increased chain length, weakening the interactions between the bilayers.
format Online
Article
Text
id pubmed-6150639
institution National Center for Biotechnology Information
language English
publishDate 2017
publisher American Chemical Society
record_format MEDLINE/PubMed
spelling pubmed-61506392018-09-24 The Rich Solid-State Phase Behavior of dl-Aminoheptanoic Acid: Five Polymorphic Forms and Their Phase Transitions Smets, Mireille M. H. Pitak, Mateusz B. Cadden, Joseph Kip, Vincent R. de Wijs, Gilles A. van Eck, Ernst R. H. Tinnemans, Paul Meekes, Hugo Vlieg, Elias Coles, Simon J. Cuppen, Herma M. Cryst Growth Des [Image: see text] The rich landscape of enantiotropically related polymorphic forms and their solid-state phase transitions of dl-2-aminoheptanoic acid (dl-AHE) has been explored using a range of complementary characterization techniques, and is largely exemplary of the polymorphic behavior of linear aliphatic amino acids. As many as five new polymorphic forms were found, connected by four fully reversible solid-state phase transitions. Two low temperature forms were refined in a high Z′ crystal structure, which is a new phenomenon for linear aliphatic amino acids. All five structures consist of two-dimensional hydrogen-bonded bilayers interconnected by weak van der Waals interactions. The single-crystal-to-single-crystal phase transitions involve shifts of bilayers and/or conformational changes in the aliphatic chain. Compared to two similar phase transitions of the related amino acid dl-norleucine, the enthalpies of transition and NMR chemical shift differences are notably smaller in dl-aminoheptanoic acid. This is explained to be a result of both the nature of the conformational changes and the increased chain length, weakening the interactions between the bilayers. American Chemical Society 2017-11-29 2018-01-03 /pmc/articles/PMC6150639/ /pubmed/30258304 http://dx.doi.org/10.1021/acs.cgd.7b01175 Text en Copyright © 2017 American Chemical Society This is an open access article published under a Creative Commons Non-Commercial No Derivative Works (CC-BY-NC-ND) Attribution License (http://pubs.acs.org/page/policy/authorchoice_ccbyncnd_termsofuse.html) , which permits copying and redistribution of the article, and creation of adaptations, all for non-commercial purposes.
spellingShingle Smets, Mireille M. H.
Pitak, Mateusz B.
Cadden, Joseph
Kip, Vincent R.
de Wijs, Gilles A.
van Eck, Ernst R. H.
Tinnemans, Paul
Meekes, Hugo
Vlieg, Elias
Coles, Simon J.
Cuppen, Herma M.
The Rich Solid-State Phase Behavior of dl-Aminoheptanoic Acid: Five Polymorphic Forms and Their Phase Transitions
title The Rich Solid-State Phase Behavior of dl-Aminoheptanoic Acid: Five Polymorphic Forms and Their Phase Transitions
title_full The Rich Solid-State Phase Behavior of dl-Aminoheptanoic Acid: Five Polymorphic Forms and Their Phase Transitions
title_fullStr The Rich Solid-State Phase Behavior of dl-Aminoheptanoic Acid: Five Polymorphic Forms and Their Phase Transitions
title_full_unstemmed The Rich Solid-State Phase Behavior of dl-Aminoheptanoic Acid: Five Polymorphic Forms and Their Phase Transitions
title_short The Rich Solid-State Phase Behavior of dl-Aminoheptanoic Acid: Five Polymorphic Forms and Their Phase Transitions
title_sort rich solid-state phase behavior of dl-aminoheptanoic acid: five polymorphic forms and their phase transitions
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6150639/
https://www.ncbi.nlm.nih.gov/pubmed/30258304
http://dx.doi.org/10.1021/acs.cgd.7b01175
work_keys_str_mv AT smetsmireillemh therichsolidstatephasebehaviorofdlaminoheptanoicacidfivepolymorphicformsandtheirphasetransitions
AT pitakmateuszb therichsolidstatephasebehaviorofdlaminoheptanoicacidfivepolymorphicformsandtheirphasetransitions
AT caddenjoseph therichsolidstatephasebehaviorofdlaminoheptanoicacidfivepolymorphicformsandtheirphasetransitions
AT kipvincentr therichsolidstatephasebehaviorofdlaminoheptanoicacidfivepolymorphicformsandtheirphasetransitions
AT dewijsgillesa therichsolidstatephasebehaviorofdlaminoheptanoicacidfivepolymorphicformsandtheirphasetransitions
AT vaneckernstrh therichsolidstatephasebehaviorofdlaminoheptanoicacidfivepolymorphicformsandtheirphasetransitions
AT tinnemanspaul therichsolidstatephasebehaviorofdlaminoheptanoicacidfivepolymorphicformsandtheirphasetransitions
AT meekeshugo therichsolidstatephasebehaviorofdlaminoheptanoicacidfivepolymorphicformsandtheirphasetransitions
AT vliegelias therichsolidstatephasebehaviorofdlaminoheptanoicacidfivepolymorphicformsandtheirphasetransitions
AT colessimonj therichsolidstatephasebehaviorofdlaminoheptanoicacidfivepolymorphicformsandtheirphasetransitions
AT cuppenhermam therichsolidstatephasebehaviorofdlaminoheptanoicacidfivepolymorphicformsandtheirphasetransitions
AT smetsmireillemh richsolidstatephasebehaviorofdlaminoheptanoicacidfivepolymorphicformsandtheirphasetransitions
AT pitakmateuszb richsolidstatephasebehaviorofdlaminoheptanoicacidfivepolymorphicformsandtheirphasetransitions
AT caddenjoseph richsolidstatephasebehaviorofdlaminoheptanoicacidfivepolymorphicformsandtheirphasetransitions
AT kipvincentr richsolidstatephasebehaviorofdlaminoheptanoicacidfivepolymorphicformsandtheirphasetransitions
AT dewijsgillesa richsolidstatephasebehaviorofdlaminoheptanoicacidfivepolymorphicformsandtheirphasetransitions
AT vaneckernstrh richsolidstatephasebehaviorofdlaminoheptanoicacidfivepolymorphicformsandtheirphasetransitions
AT tinnemanspaul richsolidstatephasebehaviorofdlaminoheptanoicacidfivepolymorphicformsandtheirphasetransitions
AT meekeshugo richsolidstatephasebehaviorofdlaminoheptanoicacidfivepolymorphicformsandtheirphasetransitions
AT vliegelias richsolidstatephasebehaviorofdlaminoheptanoicacidfivepolymorphicformsandtheirphasetransitions
AT colessimonj richsolidstatephasebehaviorofdlaminoheptanoicacidfivepolymorphicformsandtheirphasetransitions
AT cuppenhermam richsolidstatephasebehaviorofdlaminoheptanoicacidfivepolymorphicformsandtheirphasetransitions