Advances in the Asymmetric Synthesis of BINOL Derivatives

BINOL derivatives have shown relevant biological activities and are important chiral ligands and catalysts. Due to these properties, their asymmetric synthesis has attracted the interest of the scientific community. In this work, we present an overview of the most efficient methods to obtain chiral...

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Main Authors: Everton Machado da Silva, Hérika Danielle Almeida Vidal, Marcelo Augusto Pereira Januário, Arlene Gonçalves Corrêa
Format: Article
Language:English
Published: MDPI AG 2022-12-01
Series:Molecules
Subjects:
Online Access:https://www.mdpi.com/1420-3049/28/1/12
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author Everton Machado da Silva
Hérika Danielle Almeida Vidal
Marcelo Augusto Pereira Januário
Arlene Gonçalves Corrêa
author_facet Everton Machado da Silva
Hérika Danielle Almeida Vidal
Marcelo Augusto Pereira Januário
Arlene Gonçalves Corrêa
author_sort Everton Machado da Silva
collection DOAJ
description BINOL derivatives have shown relevant biological activities and are important chiral ligands and catalysts. Due to these properties, their asymmetric synthesis has attracted the interest of the scientific community. In this work, we present an overview of the most efficient methods to obtain chiral BINOLs, highlighting the use of metal complexes and organocatalysts as well as kinetic resolution. Further derivatizations of BINOLs are also discussed.
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spelling doaj.art-5140277daf704cbb8994c7351315fa0f2023-12-03T14:56:04ZengMDPI AGMolecules1420-30492022-12-012811210.3390/molecules28010012Advances in the Asymmetric Synthesis of BINOL DerivativesEverton Machado da Silva0Hérika Danielle Almeida Vidal1Marcelo Augusto Pereira Januário2Arlene Gonçalves Corrêa3Centre of Excellence for Research on Sustainable Chemistry, Department of Chemistry, Federal University of São Carlos, São Carlos 13565-905, BrazilCentre of Excellence for Research on Sustainable Chemistry, Department of Chemistry, Federal University of São Carlos, São Carlos 13565-905, BrazilCentre of Excellence for Research on Sustainable Chemistry, Department of Chemistry, Federal University of São Carlos, São Carlos 13565-905, BrazilCentre of Excellence for Research on Sustainable Chemistry, Department of Chemistry, Federal University of São Carlos, São Carlos 13565-905, BrazilBINOL derivatives have shown relevant biological activities and are important chiral ligands and catalysts. Due to these properties, their asymmetric synthesis has attracted the interest of the scientific community. In this work, we present an overview of the most efficient methods to obtain chiral BINOLs, highlighting the use of metal complexes and organocatalysts as well as kinetic resolution. Further derivatizations of BINOLs are also discussed.https://www.mdpi.com/1420-3049/28/1/12BINOLchirality transfermetal-mediated enantioselective couplingorganocatalysiskinetic resolution
spellingShingle Everton Machado da Silva
Hérika Danielle Almeida Vidal
Marcelo Augusto Pereira Januário
Arlene Gonçalves Corrêa
Advances in the Asymmetric Synthesis of BINOL Derivatives
Molecules
BINOL
chirality transfer
metal-mediated enantioselective coupling
organocatalysis
kinetic resolution
title Advances in the Asymmetric Synthesis of BINOL Derivatives
title_full Advances in the Asymmetric Synthesis of BINOL Derivatives
title_fullStr Advances in the Asymmetric Synthesis of BINOL Derivatives
title_full_unstemmed Advances in the Asymmetric Synthesis of BINOL Derivatives
title_short Advances in the Asymmetric Synthesis of BINOL Derivatives
title_sort advances in the asymmetric synthesis of binol derivatives
topic BINOL
chirality transfer
metal-mediated enantioselective coupling
organocatalysis
kinetic resolution
url https://www.mdpi.com/1420-3049/28/1/12
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AT marceloaugustopereirajanuario advancesintheasymmetricsynthesisofbinolderivatives
AT arlenegoncalvescorrea advancesintheasymmetricsynthesisofbinolderivatives