Abstract

AbstractReadily synthesized aryl α‐diimine derivatives have been used as efficient ligands for the palladium‐catalyzed oxidative bis‐alkoxycarbonylation reaction of 1,2‐disubstituted olefins. The most active catalyst A was formed in situ from bis‐(2,6‐dimethylphenyl)‐2,3‐dimethyl‐1,4‐diazabutadiene and Pd(TFA)2 (TFA=trifluoroacetate). This catalytic system was able to selectively convert 1,2‐disubstituted olefins into 2,3‐disubstituted‐succinic diesters with total diastereospecificity, in good yields (up to 97%) with 2 mol% of catalyst loading, under mild reaction conditions (4 bar of CO at 20 °C in presence of p‐ toluenesulfonic acid as additive and p‐benzoquinone as oxidant). The optimized reaction conditions could be successfully applied to 1,2‐disubstituted aromatic, aliphatic, cyclic olefins and to unsaturated fatty acid methyl esters, employing methanol or benzyl alcohol as nucleophiles. The use of the bulky, less reactive isopropyl alcohol has allowed to better understand the mechanisms involved in the catalytic process. The geometry of the carbonylated products can be explained as a consequence of a concerted syn addition of the Pd‐alkoxycarbonyl moiety to the olefin C=C bond. Catalyst A was isolated, characterized and analyzed by single crystal X‐ray diffraction analysis.magnified image

Highlights

  • Carbonylation reactions are among the most important reactions in organic and organometallic chemistry

  • On the basis of the acquired knowledge[13,14,15] and considering the results obtained on the carbonylation of terminal olefins,[13a] in this paper we have extensively studied the diastereoselective bisalkoxycarbonylation reaction of 1,2-disubstituted olefins with different alcohols for the synthesis of

  • Taking into account the conditions previously employed in the case of terminal olefins,[13a] a further optimization study on the ligands and palladium sources in the oxidative bisalkoxycarbonylation reaction was performed

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Summary

Introduction

Carbonylation reactions are among the most important reactions in organic and organometallic chemistry. The optimized reaction conditions could be successfully applied to 1,2-disubstituted aromatic, aliphatic, cyclic olefins and to unsaturated fatty acid methyl esters, employing methanol or benzyl alcohol as nucleophiles.

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