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Stereoselective, Cascade Synthesis of trans-Enynones through Coupling-Isomerization Reaction
, Bhavani Shankar Chinta
Published in American Chemical Society
2015
Volume: 80
   
Issue: 20
Pages: 10208 - 10217
Abstract
A mild, cascade methodology based on the modified Cadiot-Chodkiewicz reaction was developed for the stereoselective synthesis of trans-enynones. By this methodology, structurally divergent trans-enynones, which are embedded with sensitive functional groups, were synthesized. Control experiments suggested that the CuCl alone does not have a role in the isomerization step, whereas the CuCl-piperidine complex (formed during the cross coupling) may have a rate enhancing effect. Furthermore, additional sets of control experiments favor the involvement of unimolecular [1,2]-H shift rather than a homobimolecular proton abstraction during the isomerization step. © 2015 American Chemical Society.
About the journal
JournalData powered by TypesetJournal of Organic Chemistry
PublisherData powered by TypesetAmerican Chemical Society
ISSN00223263
Open AccessNo
Concepts (24)
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    Isomers
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    Stereochemistry
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    Stereoselectivity
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    Synthesis (chemical)
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    Control experiments
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    Cross-couplings
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    ENHANCING EFFECT
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    ISOMERIZATION REACTION
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    PROTON ABSTRACTION
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    Stereo-selective
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    Stereoselective synthesis
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    Unimolecular
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    Isomerization
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    PIPERIDINE
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    Proton
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    Article
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    Carbon nuclear magnetic resonance
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    Cross coupling reaction
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    Methodology
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    Proton nuclear magnetic resonance
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    Reaction time
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    Room temperature
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    Synthesis
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    Thin layer chromatography