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Published January 27, 2020 | Accepted Version + Supplemental Material
Journal Article Open

Copper-Catalyzed Enantioselective Allylic Alkylation with a γ-Butyrolactone-Derived Silyl Ketene Acetal

Abstract

Herein, we report a Cu‐catalyzed enantioselective allylic alkylation using a γ‐butyrolactone‐derived silyl ketene acetal. Critical to the development of this work was the identification of a novel mono‐picolinamide ligand with the appropriate steric and electronic properties to afford the desired products in high yield (up to 96 %) and high ee (up to 95 %). Aryl, aliphatic, and unsubstituted allylic chlorides bearing a broad range of functionality are well‐tolerated. Spectroscopic studies reveal that a Cu^I species is likely the active catalyst, and DFT calculations suggest ligand sterics play an important role in determining Cu coordination and thus catalyst geometry.

Additional Information

© 2019 Wiley‐VCH Verlag GmbH & Co. KGaA, Weinheim. Issue Online: 24 January 2020; Version of Record online: 16 December 2019; Accepted manuscript online: 19 November 2019; Manuscript revised: 12 November 2019; Manuscript received: 06 October 2019. The NIH‐NIGMS (R01GM080269) and Caltech are thanked for support of our research program. Financial support from Caltech and the Dow Next Generation Educator Fund is gratefully acknowledged (R.G.H.). C.I.J. thanks the National Science Foundation for a predoctoral fellowship. Alexander Q. Cusumano is thanked for assistance and helpful discussions, Dr. Scott Virgil for instrumentation and SFC assistance, Lawrence Henling for assistance with X‐Ray analysis, Dr. Mona Shahgholi for mass spectrometry assistance, Dr. Paul H. Oyala for his assistance with EPR spectroscopy, and Prof. H. B. Gray for the use of the Cary 500 UV‐vis‐NIR spectrophotometer. The authors declare no conflict of interest.

Attached Files

Accepted Version - nihms-1061149.pdf

Supplemental Material - anie201912618-s1-cuaaa-si-v3-clean.pdf

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Additional details

Created:
August 22, 2023
Modified:
October 18, 2023