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Influence of Ostwald’s Rule of Stages in the Deracemization of a Compound Using a Racemic Resolving Agent

[Image: see text] The stereoisomeric system of rac-2-phenylglycinamide (PGA) and rac-N-acetyl tryptophan (NAT) is significant in the application of chiral resolution because it has been shown that this system can be used for enantioseparation of PGA and/or NAT using a novel deracemization route of t...

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Autores principales: Lerdwiriyanupap, Tharit, Belletti, Giuseppe, Tinnemans, Paul, Cedeno, Ruel, Meekes, Hugo, Vlieg, Elias, Flood, Adrian E.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2022
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8815034/
https://www.ncbi.nlm.nih.gov/pubmed/35140550
http://dx.doi.org/10.1021/acs.cgd.1c01426
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author Lerdwiriyanupap, Tharit
Belletti, Giuseppe
Tinnemans, Paul
Cedeno, Ruel
Meekes, Hugo
Vlieg, Elias
Flood, Adrian E.
author_facet Lerdwiriyanupap, Tharit
Belletti, Giuseppe
Tinnemans, Paul
Cedeno, Ruel
Meekes, Hugo
Vlieg, Elias
Flood, Adrian E.
author_sort Lerdwiriyanupap, Tharit
collection PubMed
description [Image: see text] The stereoisomeric system of rac-2-phenylglycinamide (PGA) and rac-N-acetyl tryptophan (NAT) is significant in the application of chiral resolution because it has been shown that this system can be used for enantioseparation of PGA and/or NAT using a novel deracemization route of the conglomerate salt formed. However, it was also found that the conglomerate salt eventually converted into different crystal forms that limited the time available for the separation. Herein, we try to understand the phase conversion occurring in this system using DSC, PXRD, and SC-XRD. The related structures of the salt (two polymorphs of the more stable homochiral (dd- and ll-) salts and one polymorph of the less stable heterochiral (dl- and ld-) monohydrate salts) are demonstrated and discussed relating to their relative stabilities. The successful deracemization was demonstrated using the heterochiral (dl- or ld-) monohydrate salts. However, following Ostwald’s rule of stages, only limited time is available for the deracemization before the metastable compound converts into the more stable homochiral (dd- and ll-) pair. Moreover, the occurrence of the (dd- and ll-) phase always coincides with the formation of yet another phase of the racemic compound containing four components in a crystal. Ostwald’s rule of stages here thus involves three steps and phases and is highly significant during the deracemization of the homochiral species.
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spelling pubmed-88150342022-02-07 Influence of Ostwald’s Rule of Stages in the Deracemization of a Compound Using a Racemic Resolving Agent Lerdwiriyanupap, Tharit Belletti, Giuseppe Tinnemans, Paul Cedeno, Ruel Meekes, Hugo Vlieg, Elias Flood, Adrian E. Cryst Growth Des [Image: see text] The stereoisomeric system of rac-2-phenylglycinamide (PGA) and rac-N-acetyl tryptophan (NAT) is significant in the application of chiral resolution because it has been shown that this system can be used for enantioseparation of PGA and/or NAT using a novel deracemization route of the conglomerate salt formed. However, it was also found that the conglomerate salt eventually converted into different crystal forms that limited the time available for the separation. Herein, we try to understand the phase conversion occurring in this system using DSC, PXRD, and SC-XRD. The related structures of the salt (two polymorphs of the more stable homochiral (dd- and ll-) salts and one polymorph of the less stable heterochiral (dl- and ld-) monohydrate salts) are demonstrated and discussed relating to their relative stabilities. The successful deracemization was demonstrated using the heterochiral (dl- or ld-) monohydrate salts. However, following Ostwald’s rule of stages, only limited time is available for the deracemization before the metastable compound converts into the more stable homochiral (dd- and ll-) pair. Moreover, the occurrence of the (dd- and ll-) phase always coincides with the formation of yet another phase of the racemic compound containing four components in a crystal. Ostwald’s rule of stages here thus involves three steps and phases and is highly significant during the deracemization of the homochiral species. American Chemical Society 2022-01-24 2022-02-02 /pmc/articles/PMC8815034/ /pubmed/35140550 http://dx.doi.org/10.1021/acs.cgd.1c01426 Text en © 2022 The Authors. Published by American Chemical Society https://creativecommons.org/licenses/by/4.0/Permits the broadest form of re-use including for commercial purposes, provided that author attribution and integrity are maintained (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Lerdwiriyanupap, Tharit
Belletti, Giuseppe
Tinnemans, Paul
Cedeno, Ruel
Meekes, Hugo
Vlieg, Elias
Flood, Adrian E.
Influence of Ostwald’s Rule of Stages in the Deracemization of a Compound Using a Racemic Resolving Agent
title Influence of Ostwald’s Rule of Stages in the Deracemization of a Compound Using a Racemic Resolving Agent
title_full Influence of Ostwald’s Rule of Stages in the Deracemization of a Compound Using a Racemic Resolving Agent
title_fullStr Influence of Ostwald’s Rule of Stages in the Deracemization of a Compound Using a Racemic Resolving Agent
title_full_unstemmed Influence of Ostwald’s Rule of Stages in the Deracemization of a Compound Using a Racemic Resolving Agent
title_short Influence of Ostwald’s Rule of Stages in the Deracemization of a Compound Using a Racemic Resolving Agent
title_sort influence of ostwald’s rule of stages in the deracemization of a compound using a racemic resolving agent
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8815034/
https://www.ncbi.nlm.nih.gov/pubmed/35140550
http://dx.doi.org/10.1021/acs.cgd.1c01426
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