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Mechanistic studies on covalent assemblies of metal-mediated hemi-aminal ethers

The use of reversible covalent bonding in a four-component assembly incorporating chiral alcohols was recently reported to give a method for determining the enantiomeric excess of the alcohols via CD spectroscopy. Experiments that probe the mechanism of this assembly, which consists of 2-formylpyrid...

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Autores principales: Jo, Hyun Hwa, Edupuganti, Ramakrishna, You, Lei, Dalby, Kevin N., Anslyn, Eric V.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Royal Society of Chemistry 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4267293/
https://www.ncbi.nlm.nih.gov/pubmed/25530834
http://dx.doi.org/10.1039/c4sc02495h
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author Jo, Hyun Hwa
Edupuganti, Ramakrishna
You, Lei
Dalby, Kevin N.
Anslyn, Eric V.
author_facet Jo, Hyun Hwa
Edupuganti, Ramakrishna
You, Lei
Dalby, Kevin N.
Anslyn, Eric V.
author_sort Jo, Hyun Hwa
collection PubMed
description The use of reversible covalent bonding in a four-component assembly incorporating chiral alcohols was recently reported to give a method for determining the enantiomeric excess of the alcohols via CD spectroscopy. Experiments that probe the mechanism of this assembly, which consists of 2-formylpyridine (2-PA), dipicolylamine (DPA), Zn(ii) and alcohols to yield zinc complexes of tren-like ligands, are presented. The studies focus upon the mechanism of conversion of a hemi-aminal (1) to a hemi-aminal ether (3), thereby incorporating the fourth component. It was found that molecular sieves along with 3 to 4 equivalents of alcohol are required to drive the conversion of 1 to 3. Attempts to isolate an intermediate in this reaction via addition of strong Lewis acids led to the discovery of a five-membered ring pyridinium salt (5), but upon exposure to Zn(ii) and alcohols gave different products to the assembly. This was interpreted to support the intermediacy of an iminium species. Kinetic studies reveal that the conversion of 1 to 3 is zero-order in alcohol in large excesses of alcohol, supporting rate-determining formation of an intermediate prior to reaction with alcohol. Further, the magnitudes of the rate constants for interconversion of 1 and 3 are similar, supporting the notion that there are similar rate-determining steps (rds) for the forward and reverse reactions. Hammett plots show that the rds involves creation of a negative charge (interpreted as the loss of positive charge), supporting the notion that the decomplexation of Zn(ii) from the assemblies to generate apo-forms of 1 and 3 is rate-determining. The individual mechanistic conclusions are combined to create a qualitative reaction coordinate diagram for the interconversion of 1 and 3.
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spelling pubmed-42672932016-01-01 Mechanistic studies on covalent assemblies of metal-mediated hemi-aminal ethers Jo, Hyun Hwa Edupuganti, Ramakrishna You, Lei Dalby, Kevin N. Anslyn, Eric V. Chem Sci Chemistry The use of reversible covalent bonding in a four-component assembly incorporating chiral alcohols was recently reported to give a method for determining the enantiomeric excess of the alcohols via CD spectroscopy. Experiments that probe the mechanism of this assembly, which consists of 2-formylpyridine (2-PA), dipicolylamine (DPA), Zn(ii) and alcohols to yield zinc complexes of tren-like ligands, are presented. The studies focus upon the mechanism of conversion of a hemi-aminal (1) to a hemi-aminal ether (3), thereby incorporating the fourth component. It was found that molecular sieves along with 3 to 4 equivalents of alcohol are required to drive the conversion of 1 to 3. Attempts to isolate an intermediate in this reaction via addition of strong Lewis acids led to the discovery of a five-membered ring pyridinium salt (5), but upon exposure to Zn(ii) and alcohols gave different products to the assembly. This was interpreted to support the intermediacy of an iminium species. Kinetic studies reveal that the conversion of 1 to 3 is zero-order in alcohol in large excesses of alcohol, supporting rate-determining formation of an intermediate prior to reaction with alcohol. Further, the magnitudes of the rate constants for interconversion of 1 and 3 are similar, supporting the notion that there are similar rate-determining steps (rds) for the forward and reverse reactions. Hammett plots show that the rds involves creation of a negative charge (interpreted as the loss of positive charge), supporting the notion that the decomplexation of Zn(ii) from the assemblies to generate apo-forms of 1 and 3 is rate-determining. The individual mechanistic conclusions are combined to create a qualitative reaction coordinate diagram for the interconversion of 1 and 3. Royal Society of Chemistry 2015-01-01 2014-09-10 /pmc/articles/PMC4267293/ /pubmed/25530834 http://dx.doi.org/10.1039/c4sc02495h Text en This journal is © The Royal Society of Chemistry 2014 http://creativecommons.org/licenses/by/3.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution 3.0 Unported License (http://creativecommons.org/licenses/by/3.0/) which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Chemistry
Jo, Hyun Hwa
Edupuganti, Ramakrishna
You, Lei
Dalby, Kevin N.
Anslyn, Eric V.
Mechanistic studies on covalent assemblies of metal-mediated hemi-aminal ethers
title Mechanistic studies on covalent assemblies of metal-mediated hemi-aminal ethers
title_full Mechanistic studies on covalent assemblies of metal-mediated hemi-aminal ethers
title_fullStr Mechanistic studies on covalent assemblies of metal-mediated hemi-aminal ethers
title_full_unstemmed Mechanistic studies on covalent assemblies of metal-mediated hemi-aminal ethers
title_short Mechanistic studies on covalent assemblies of metal-mediated hemi-aminal ethers
title_sort mechanistic studies on covalent assemblies of metal-mediated hemi-aminal ethers
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4267293/
https://www.ncbi.nlm.nih.gov/pubmed/25530834
http://dx.doi.org/10.1039/c4sc02495h
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