Issue 17, 2018

Palladium-catalysed carboxytelomerisation of β-myrcene to highly branched C21-esters

Abstract

The palladium-catalysed carboxytelomerisation of a branched 1,3-diene with alcohols is herein presented. By applying the renewable β-myrcene as a model substrate, access to highly branched industrially relevant C21-esters in a 100% atom economical way is thereby established. Based on a detailed investigation on the influence of different monophosphine ligands, the Tolman angle was determined to be a crucial factor for high chemoselectivity towards the desired ester products. Additionally, through a comprehensive design of experiments (DoE), significant reaction parameters were identified leading to optimised reaction conditions for methanol as the nucleophile. Finally, the generality of these optimised reaction conditions was proven by applying eight different alcohols yielding highly branched esters with yields of up to 99% and excellent chemoselectivities.

Graphical abstract: Palladium-catalysed carboxytelomerisation of β-myrcene to highly branched C21-esters

Supplementary files

Article information

Article type
Paper
Submitted
17 Apr 2018
Accepted
22 Jun 2018
First published
25 Jun 2018

Catal. Sci. Technol., 2018,8, 4332-4337

Palladium-catalysed carboxytelomerisation of β-myrcene to highly branched C21-esters

D. Vogelsang, M. Dittmar, T. Seidensticker and A. J. Vorholt, Catal. Sci. Technol., 2018, 8, 4332 DOI: 10.1039/C8CY00769A

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