| Literature DB >> 31390131 |
Rui Sang1, Peter Kucmierczyk2,3, Ricarda Dühren1, Rauf Razzaq1, Kaiwu Dong1, Jie Liu1, Robert Franke2,3, Ralf Jackstell1, Matthias Beller1.
Abstract
The synthesis of carboxylic acids is of fundamental importance in the chemical industry and the corresponding products find numerous applications for polymers, cosmetics, pharmaceuticals, agrochemicals, and other manufactured chemicals. Although hydroxycarbonylations of olefins have been known for more than 60 years, currently known catalyst systems for this transformation do not fulfill industrial requirements, for example, stability. Presented herein for the first time is an aqueous-phase protocol that allows conversion of various olefins, including sterically hindered and demanding tetra-, tri-, and 1,1-disubstituted systems, as well as terminal alkenes, into the corresponding carboxylic acids in excellent yields. The outstanding stability of the catalyst system (26 recycling runs in 32 days without measurable loss of activity), is showcased in the preparation of an industrially relevant fatty acid. Key-to-success is the use of a built-in-base ligand under acidic aqueous conditions. This catalytic system is expected to provide a basis for new cost-competitive processes for the industrial production of carboxylic acids.Entities:
Keywords: carboxylic acids; industrial chemistry; ligand design; olefins; palladium
Year: 2019 PMID: 31390131 DOI: 10.1002/anie.201908451
Source DB: PubMed Journal: Angew Chem Int Ed Engl ISSN: 1433-7851 Impact factor: 15.336