TY - JOUR
T1 - Palladium-catalyzed enolate arylation as a key C-C bond-forming reaction for the synthesis of isoquinolines
AU - Pilgrim, Ben S.
AU - Gatland, Alice E.
AU - Esteves, Carlos H.A.
AU - McTernan, Charlie T.
AU - Jones, Geraint R.
AU - Tatton, Matthew R.
AU - Procopiou, Panayiotis A.
AU - Donohoe, Timothy J.
N1 - Funding Information:
B.S.P. would like to thank St. John?s College Oxford for financial support. A.E.G. and T.J.D. would like to thank the EPSRC and GlaxoSmithKline for financial support. C.H.A.E. would like to thank CAPES, Coordena??o de Aperfei?oamento de Pessoal de N?vel Superior, Brazil for financial support.
Publisher Copyright:
© 2016 The Royal Society of Chemistry.
Copyright:
Copyright 2016 Elsevier B.V., All rights reserved.
PY - 2016
Y1 - 2016
N2 - The palladium-catalyzed coupling of an enolate with an ortho-functionalized aryl halide (an α-arylation) furnishes a protected 1,5-dicarbonyl moiety that can be cyclized to an isoquinoline with a source of ammonia. This fully regioselective synthetic route tolerates a wide range of substituents, including those that give rise to the traditionally difficult to access electron-deficient isoquinoline skeletons. These two synthetic operations can be combined to give a three-component, one-pot isoquinoline synthesis. Alternatively, cyclization of the intermediates with hydroxylamine hydrochloride engenders direct access to isoquinoline N-oxides; and cyclization with methylamine, gives isoquinolinium salts. Significant diversity is available in the substituents at the C4 position in four-component, one-pot couplings, by either trapping the in situ intermediate after α-arylation with carbon or heteroatom-based electrophiles, or by performing an α,α-heterodiarylation to install aryl groups at this position. The α-arylation of nitrile and ester enolates gives access to 3-amino and 3-hydroxyisoquinolines and the α-arylation of tert-butyl cyanoacetate followed by electrophile trapping, decarboxylation and cyclization, C4-functionalized 3-aminoisoquinolines. An oxime directing group can be used to direct a C-H functionalization/bromination, which allows monofunctionalized rather than difunctionalized aryl precursors to be brought through this synthetic route.
AB - The palladium-catalyzed coupling of an enolate with an ortho-functionalized aryl halide (an α-arylation) furnishes a protected 1,5-dicarbonyl moiety that can be cyclized to an isoquinoline with a source of ammonia. This fully regioselective synthetic route tolerates a wide range of substituents, including those that give rise to the traditionally difficult to access electron-deficient isoquinoline skeletons. These two synthetic operations can be combined to give a three-component, one-pot isoquinoline synthesis. Alternatively, cyclization of the intermediates with hydroxylamine hydrochloride engenders direct access to isoquinoline N-oxides; and cyclization with methylamine, gives isoquinolinium salts. Significant diversity is available in the substituents at the C4 position in four-component, one-pot couplings, by either trapping the in situ intermediate after α-arylation with carbon or heteroatom-based electrophiles, or by performing an α,α-heterodiarylation to install aryl groups at this position. The α-arylation of nitrile and ester enolates gives access to 3-amino and 3-hydroxyisoquinolines and the α-arylation of tert-butyl cyanoacetate followed by electrophile trapping, decarboxylation and cyclization, C4-functionalized 3-aminoisoquinolines. An oxime directing group can be used to direct a C-H functionalization/bromination, which allows monofunctionalized rather than difunctionalized aryl precursors to be brought through this synthetic route.
UR - http://www.scopus.com/inward/record.url?scp=84969165504&partnerID=8YFLogxK
U2 - 10.1039/c5ob02320c
DO - 10.1039/c5ob02320c
M3 - Article
AN - SCOPUS:84969165504
SN - 1477-0520
VL - 14
SP - 1065
EP - 1090
JO - ORGANIC AND BIOMOLECULAR CHEMISTRY
JF - ORGANIC AND BIOMOLECULAR CHEMISTRY
IS - 3
ER -