Integrated catalysis opens new arylation pathways via regiodivergent enzymatic C–H activation

Biocatalysis and metal catalysis often provide complimentary reactivities and selectivities. Here, the authors exploit the regioselectivity of an enzymatic C–H activation followed by palladium catalysed carbon-carbon bond formation in one pot, with membrane compartmentalization used to isolate the t...

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Main Authors: Jonathan Latham, Jean-Marc Henry, Humera H. Sharif, Binuraj R. K. Menon, Sarah A. Shepherd, Michael F. Greaney, Jason Micklefield
Format: Article
Language:English
Published: Nature Publishing Group 2016-06-01
Series:Nature Communications
Online Access:https://doi.org/10.1038/ncomms11873
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spelling doaj-0433d1f6927342b4876e95b9f595c6da2021-05-11T11:05:24ZengNature Publishing GroupNature Communications2041-17232016-06-01711810.1038/ncomms11873Integrated catalysis opens new arylation pathways via regiodivergent enzymatic C–H activationJonathan Latham0Jean-Marc Henry1Humera H. Sharif2Binuraj R. K. Menon3Sarah A. Shepherd4Michael F. Greaney5Jason Micklefield6School of Chemistry, The University of ManchesterSchool of Chemistry, The University of ManchesterSchool of Chemistry, The University of ManchesterSchool of Chemistry, The University of ManchesterSchool of Chemistry, The University of ManchesterSchool of Chemistry, The University of ManchesterSchool of Chemistry, The University of ManchesterBiocatalysis and metal catalysis often provide complimentary reactivities and selectivities. Here, the authors exploit the regioselectivity of an enzymatic C–H activation followed by palladium catalysed carbon-carbon bond formation in one pot, with membrane compartmentalization used to isolate the two chemistries.https://doi.org/10.1038/ncomms11873
collection DOAJ
language English
format Article
sources DOAJ
author Jonathan Latham
Jean-Marc Henry
Humera H. Sharif
Binuraj R. K. Menon
Sarah A. Shepherd
Michael F. Greaney
Jason Micklefield
spellingShingle Jonathan Latham
Jean-Marc Henry
Humera H. Sharif
Binuraj R. K. Menon
Sarah A. Shepherd
Michael F. Greaney
Jason Micklefield
Integrated catalysis opens new arylation pathways via regiodivergent enzymatic C–H activation
Nature Communications
author_facet Jonathan Latham
Jean-Marc Henry
Humera H. Sharif
Binuraj R. K. Menon
Sarah A. Shepherd
Michael F. Greaney
Jason Micklefield
author_sort Jonathan Latham
title Integrated catalysis opens new arylation pathways via regiodivergent enzymatic C–H activation
title_short Integrated catalysis opens new arylation pathways via regiodivergent enzymatic C–H activation
title_full Integrated catalysis opens new arylation pathways via regiodivergent enzymatic C–H activation
title_fullStr Integrated catalysis opens new arylation pathways via regiodivergent enzymatic C–H activation
title_full_unstemmed Integrated catalysis opens new arylation pathways via regiodivergent enzymatic C–H activation
title_sort integrated catalysis opens new arylation pathways via regiodivergent enzymatic c–h activation
publisher Nature Publishing Group
series Nature Communications
issn 2041-1723
publishDate 2016-06-01
description Biocatalysis and metal catalysis often provide complimentary reactivities and selectivities. Here, the authors exploit the regioselectivity of an enzymatic C–H activation followed by palladium catalysed carbon-carbon bond formation in one pot, with membrane compartmentalization used to isolate the two chemistries.
url https://doi.org/10.1038/ncomms11873
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AT binurajrkmenon integratedcatalysisopensnewarylationpathwaysviaregiodivergentenzymaticchactivation
AT sarahashepherd integratedcatalysisopensnewarylationpathwaysviaregiodivergentenzymaticchactivation
AT michaelfgreaney integratedcatalysisopensnewarylationpathwaysviaregiodivergentenzymaticchactivation
AT jasonmicklefield integratedcatalysisopensnewarylationpathwaysviaregiodivergentenzymaticchactivation
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