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Ni(II) Schiff-Base Complexes As Chiral Electroauxiliaries and Methodological Platform for Stereoselective Electrochemical Functionalization of Amino Acids

Overview
Journal Chem Rec
Publisher Wiley
Specialty Chemistry
Date 2021 Mar 30
PMID 33783962
Citations 2
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Abstract

The concept of chiral electroauxiliary based on the redox active chiral platform to perform transformations of a redox inactive substrate is suggested and discussed in the context of the targeted stereoselective electrochemical functionalization of amino acids. Tailor-made amino acids are essential structural features of modern medicinal chemistry and drug design; the development of efficient synthetic approaches to these compounds is of topical interest. The modified substrate (an amino acid) is included as a structural motif in the redox active complex (with a possibility to be released after modification) that integrates "a bifunctional linker" (the structural motif capable to "catch" a substrate) and a chiral moiety responsible for asymmetry induction. The amino acid, being included as a part of such ensemble, becomes stable towards redox destruction and its targeted electrochemical modification saving the amino acid skeleton is possible, thus developing new modes of reactivity for well-known compounds.

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A new oxidatively stable ligand for the chiral functionalization of amino acids in Ni(II)-Schiff base complexes.

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Reductive opening of a cyclopropane ring in the Ni(II) coordination environment: a route to functionalized dehydroalanine and cysteine derivatives.

Levitskiy O, Aglamazova O, Grishin Y, Magdesieva T Beilstein J Org Chem. 2022; 18:1166-1176.

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