Asymmetric Synthesis of Enantiopure Pyrrolidines by C(sp3)−H Amination of Hydrocarbons

The asymmetric synthesis of enantiopure pyrrolidines is reported via a streamlined strategy relying on two sequential C−H functionalizations of simple hydrocarbons. The first step is a regio‐ and stereoselective catalytic nitrene C−H insertion. Then, a subsequent diastereoselective cyclization invol...

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Veröffentlicht in:Angewandte Chemie International Edition 2021-09, Vol.60 (40), p.21708-21712
Hauptverfasser: Lazib, Yanis, Retailleau, Pascal, Saget, Tanguy, Darses, Benjamin, Dauban, Philippe
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container_issue 40
container_start_page 21708
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creator Lazib, Yanis
Retailleau, Pascal
Saget, Tanguy
Darses, Benjamin
Dauban, Philippe
description The asymmetric synthesis of enantiopure pyrrolidines is reported via a streamlined strategy relying on two sequential C−H functionalizations of simple hydrocarbons. The first step is a regio‐ and stereoselective catalytic nitrene C−H insertion. Then, a subsequent diastereoselective cyclization involving a 1,5‐hydrogen atom transfer (HAT) from a N‐centered radical leads to the formation of pyrrolidines that can then be converted to their free NH‐derivatives. Simple hydrocarbons such as alkanes are shown to be useful building blocks for the asymmetric synthesis of heterocycles. They are converted in only two steps to pyrrolidines by application of stereoselective C(sp3)−H amination reactions. Symmetrical and non‐symmetrical enantiopure 2,5‐disubstituted pyrrolidines are isolated in good yields.
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subjects Amination
Asymmetric synthesis
Asymmetry
Chemical Sciences
C−H amination
haloamine
Hydrocarbons
nitrene
Organic chemistry
pyrrolidine
Stereoselectivity
Synthesis
title Asymmetric Synthesis of Enantiopure Pyrrolidines by C(sp3)−H Amination of Hydrocarbons
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