Nickel-catalysed enantioselective arylative cyclisations

Enantioselective Nickel-catalysed anti-Carbometallative Cyclisations of Alkynyl Electrophiles Enabled by Reversible Alkenylnickel E/Z Isomerisation. Highly enantioselective anti-carbometallations of alkynes bearing tethered ketones is described using a Ni(II) salt and a commercially available chiral...

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Main Author: Clarke, Christopher
Format: Thesis (University of Nottingham only)
Language:English
Published: 2019
Subjects:
Online Access:https://eprints.nottingham.ac.uk/52164/
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author Clarke, Christopher
author_facet Clarke, Christopher
author_sort Clarke, Christopher
building Nottingham Research Data Repository
collection Online Access
description Enantioselective Nickel-catalysed anti-Carbometallative Cyclisations of Alkynyl Electrophiles Enabled by Reversible Alkenylnickel E/Z Isomerisation. Highly enantioselective anti-carbometallations of alkynes bearing tethered ketones is described using a Ni(II) salt and a commercially available chiral phosphinooxazoline ligand. Due to the syn-selective nature of alkyne-migratory insertion, many examples of carbometallative processes giving the cyclised syn-products have been reported, however, anti¬-carbometallative processes are rare. The mechanism of this anti-carbometallation is thought to occur via an alkenylnickel E/Z-isomerisation of the organometallic species formed after initial alkyne migratory insertion. Although a number of examples of such isomerisaions have been reported, the utilisation of the phenomina in ring-forming reactions to give anti-carbometallation products is much less well explored. Further reaction development for the nickel-catalysed anti-carbometallative cyclisations of alkynyl electrophiles has allowed for the synthesis of enantioenriched cyclopentenones using malonates as electrophiles. The use of the trifloroethanol leaving group on a malonate electrophile is important for efficient reactivity and allows the previously unreactive ester electrophile to be used. However, inorder to obtain high enantioselectivities and aryl group at the quaternaty centre of the substrate is required.
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format Thesis (University of Nottingham only)
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institution University of Nottingham Malaysia Campus
institution_category Local University
language English
last_indexed 2025-11-14T20:23:20Z
publishDate 2019
recordtype eprints
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spelling nottingham-521642025-02-28T14:08:58Z https://eprints.nottingham.ac.uk/52164/ Nickel-catalysed enantioselective arylative cyclisations Clarke, Christopher Enantioselective Nickel-catalysed anti-Carbometallative Cyclisations of Alkynyl Electrophiles Enabled by Reversible Alkenylnickel E/Z Isomerisation. Highly enantioselective anti-carbometallations of alkynes bearing tethered ketones is described using a Ni(II) salt and a commercially available chiral phosphinooxazoline ligand. Due to the syn-selective nature of alkyne-migratory insertion, many examples of carbometallative processes giving the cyclised syn-products have been reported, however, anti¬-carbometallative processes are rare. The mechanism of this anti-carbometallation is thought to occur via an alkenylnickel E/Z-isomerisation of the organometallic species formed after initial alkyne migratory insertion. Although a number of examples of such isomerisaions have been reported, the utilisation of the phenomina in ring-forming reactions to give anti-carbometallation products is much less well explored. Further reaction development for the nickel-catalysed anti-carbometallative cyclisations of alkynyl electrophiles has allowed for the synthesis of enantioenriched cyclopentenones using malonates as electrophiles. The use of the trifloroethanol leaving group on a malonate electrophile is important for efficient reactivity and allows the previously unreactive ester electrophile to be used. However, inorder to obtain high enantioselectivities and aryl group at the quaternaty centre of the substrate is required. 2019-07-19 Thesis (University of Nottingham only) NonPeerReviewed application/pdf en arr https://eprints.nottingham.ac.uk/52164/1/Christopher%20Clarke%20Thesis%20Final.pdf Clarke, Christopher (2019) Nickel-catalysed enantioselective arylative cyclisations. PhD thesis, University of Nottingham. Nickel Catalysis
spellingShingle Nickel
Catalysis
Clarke, Christopher
Nickel-catalysed enantioselective arylative cyclisations
title Nickel-catalysed enantioselective arylative cyclisations
title_full Nickel-catalysed enantioselective arylative cyclisations
title_fullStr Nickel-catalysed enantioselective arylative cyclisations
title_full_unstemmed Nickel-catalysed enantioselective arylative cyclisations
title_short Nickel-catalysed enantioselective arylative cyclisations
title_sort nickel-catalysed enantioselective arylative cyclisations
topic Nickel
Catalysis
url https://eprints.nottingham.ac.uk/52164/