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  5. Asymmetric Fluorination of α-Branched Cyclohexanones Enabled by a Combination of Chiral Anion Phase-Transfer Catalysis and Enamine Catalysis using Protected Amino Acids

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Article
en
2014

Asymmetric Fluorination of α-Branched Cyclohexanones Enabled by a Combination of Chiral Anion Phase-Transfer Catalysis and Enamine Catalysis using Protected Amino Acids

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en
2014
Vol 136 (14)
Vol. 136
DOI: 10.1021/ja500882x

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Dean Toste
Dean Toste

University of California, Berkeley

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Xiaoyu Yang
Robert J. Phipps
Dean Toste

Abstract

We report a study involving the successful merger of two separate chiral catalytic cycles: a chiral anion phase-transfer catalysis cycle to activate Selectfluor and an enamine activation cycle, using a protected amino acid as organocatalyst. We have demonstrated the viability of this approach with the direct asymmetric fluorination of α-substituted cyclohexanones to generate quaternary fluorine-containing stereocenters. With these two chiral catalytic cycles operating together in a matched sense, high enantioselectivites can be achieved, and we envisage that this dual catalysis method has the potential to be more broadly applicable, given the breadth of enamine catalysis. It also represents a rare example of chiral enamine catalysis operating successfully on α-branched ketones, substrates commonly inert to this activation mode.

How to cite this publication

Xiaoyu Yang, Robert J. Phipps, Dean Toste (2014). Asymmetric Fluorination of α-Branched Cyclohexanones Enabled by a Combination of Chiral Anion Phase-Transfer Catalysis and Enamine Catalysis using Protected Amino Acids. , 136(14), DOI: https://doi.org/10.1021/ja500882x.

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Publication Details

Type

Article

Year

2014

Authors

3

Datasets

0

Total Files

0

Language

en

DOI

https://doi.org/10.1021/ja500882x

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