Synlett 2017; 28(16): 2115-2120
DOI: 10.1055/s-0036-1590806
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© Georg Thieme Verlag Stuttgart · New York

Synthesis of 2-Substituted Aziridine-2-Carboxylic Esters via Michael-Induced Ring-Closure Strategy

Ewa Pietrasiak
Syngenta Crop Protection AG, Chemical Research, Schaffhauserstrasse 101, 4332 Stein, Switzerland   Email: renaud.beaudegnies@syngenta.com
,
Grit Schade
Syngenta Crop Protection AG, Chemical Research, Schaffhauserstrasse 101, 4332 Stein, Switzerland   Email: renaud.beaudegnies@syngenta.com
,
Myriam Baalouch
Syngenta Crop Protection AG, Chemical Research, Schaffhauserstrasse 101, 4332 Stein, Switzerland   Email: renaud.beaudegnies@syngenta.com
,
Daniel Emery
Syngenta Crop Protection AG, Chemical Research, Schaffhauserstrasse 101, 4332 Stein, Switzerland   Email: renaud.beaudegnies@syngenta.com
,
Syngenta Crop Protection AG, Chemical Research, Schaffhauserstrasse 101, 4332 Stein, Switzerland   Email: renaud.beaudegnies@syngenta.com
› Author Affiliations
Further Information

Publication History

Received: 19 April 2017

Accepted after revision: 22 May 2017

Publication Date:
12 July 2017 (online)


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Abstract

A Michael-induced ring-closure (MIRC) strategy allowing the synthesis of 2-substituted aziridine-2-carboxylic esters is presented. A broad spectrum of nucleophiles can be applied, leading to large diversity of products which can be subjected to further structural modifications. Diastereoselective ring closure is observed in the case of chiral substrates.

Supporting Information