Chiral recognition in contact ion-pairs; observation, characterization and analysis

Chiral ion-pairs are playing an increasingly important role in asymmetric catalysis. In order to understand the source of molecular recognition, a simple model system based on a BINAP-Rh(dialkene) cation and a BINOL borate anion was studied for both diastereomeric forms. It was discovered that one o...

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Main Authors: Raskatov, J, Thompson, A, Cowley, A, Claridge, T, Brown, J
格式: Journal article
語言:English
出版: 2013
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author Raskatov, J
Thompson, A
Cowley, A
Claridge, T
Brown, J
author_facet Raskatov, J
Thompson, A
Cowley, A
Claridge, T
Brown, J
author_sort Raskatov, J
collection OXFORD
description Chiral ion-pairs are playing an increasingly important role in asymmetric catalysis. In order to understand the source of molecular recognition, a simple model system based on a BINAP-Rh(dialkene) cation and a BINOL borate anion was studied for both diastereomeric forms. It was discovered that one of these was energetically preferred and methods for quantifying the difference were devised using 31P NMR. The effect was general over a series of bis-binaphthyl borate anions, and required cycloocta-1,5-diene rather than bicyclohepta[2.2.1]diene as the dialkene component. The 1H NMR spectra of the cation in the parent ion pairs showed a range of anion-induced chemical shifts, their specificity implying selectivity in the ion-pair contact. X-ray structures of the two cyclooctadiene complexes were obtained and it proved possible to analyse the preferred contacts of individual ion-pairs. Rather than involving specific π-π, CH-π and CH-O intermolecular forces, the preference for one diastereomer in the COD case is based on dispersion forces that respond to the ability to pack the dialkene, and particularly its sp3 units, for maximum interaction with a concave naphthyl fragment. This interpretation is supported by analysis of one related NBD complex. © 2013 The Royal Society of Chemistry.
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spelling oxford-uuid:a3e2a3a9-c60f-4067-a46c-39b6438f5a992022-03-27T02:30:11ZChiral recognition in contact ion-pairs; observation, characterization and analysisJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:a3e2a3a9-c60f-4067-a46c-39b6438f5a99EnglishSymplectic Elements at Oxford2013Raskatov, JThompson, ACowley, AClaridge, TBrown, JChiral ion-pairs are playing an increasingly important role in asymmetric catalysis. In order to understand the source of molecular recognition, a simple model system based on a BINAP-Rh(dialkene) cation and a BINOL borate anion was studied for both diastereomeric forms. It was discovered that one of these was energetically preferred and methods for quantifying the difference were devised using 31P NMR. The effect was general over a series of bis-binaphthyl borate anions, and required cycloocta-1,5-diene rather than bicyclohepta[2.2.1]diene as the dialkene component. The 1H NMR spectra of the cation in the parent ion pairs showed a range of anion-induced chemical shifts, their specificity implying selectivity in the ion-pair contact. X-ray structures of the two cyclooctadiene complexes were obtained and it proved possible to analyse the preferred contacts of individual ion-pairs. Rather than involving specific π-π, CH-π and CH-O intermolecular forces, the preference for one diastereomer in the COD case is based on dispersion forces that respond to the ability to pack the dialkene, and particularly its sp3 units, for maximum interaction with a concave naphthyl fragment. This interpretation is supported by analysis of one related NBD complex. © 2013 The Royal Society of Chemistry.
spellingShingle Raskatov, J
Thompson, A
Cowley, A
Claridge, T
Brown, J
Chiral recognition in contact ion-pairs; observation, characterization and analysis
title Chiral recognition in contact ion-pairs; observation, characterization and analysis
title_full Chiral recognition in contact ion-pairs; observation, characterization and analysis
title_fullStr Chiral recognition in contact ion-pairs; observation, characterization and analysis
title_full_unstemmed Chiral recognition in contact ion-pairs; observation, characterization and analysis
title_short Chiral recognition in contact ion-pairs; observation, characterization and analysis
title_sort chiral recognition in contact ion pairs observation characterization and analysis
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AT claridget chiralrecognitionincontactionpairsobservationcharacterizationandanalysis
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