On the way to biodegradable poly(hydroxy butyrate) from propylene oxide and carbon monoxide via [beta]-butyrolactone: Multisite catalysis with newly designed chiral indole-imino chromium(III) complexes

Wölfle, H; Kopacka, H; Wurst, K; Preishuber-Pflügl, P; Bildstein, B

HERO ID

591740

Reference Type

Journal Article

Year

2009

HERO ID 591740
In Press No
Year 2009
Title On the way to biodegradable poly(hydroxy butyrate) from propylene oxide and carbon monoxide via [beta]-butyrolactone: Multisite catalysis with newly designed chiral indole-imino chromium(III) complexes
Authors Wölfle, H; Kopacka, H; Wurst, K; Preishuber-Pflügl, P; Bildstein, B
Journal Journal of Organometallic Chemistry
Volume 694
Issue 16
Page Numbers 2493-2512
Abstract Enantioenriched poly(hydroxy butyrate) (PHB) is a biodegradable polyester of significant commercial interest as an environmentally benign substitute of commodity polyolefines. We report on the design and development of new chiral indole-based ligand families and on their chromium(III) complexes as enantioselective catalysts for the conversion of propylene oxide and carbon monoxide to enantioenriched [beta]-butyrolactone, the key monomer for the production of PHB by ring-opening polymerization. The enantioselective carbonylation catalysts are based on new chiral tri- and tetradentate [N2O] and [N4] chromium(III) complexes containing chiral indolaldimine ligand scaffolds. The conceptual design of these ligands is inspired by Jacobsen's salicylaldimine lead structure; the key difference is an exchange of the salicyl-O-donor against an indole-N-donor, allowing additional structural diversity and stereoelectronic tuning by the indole substitution pattern. Synthetically, chiral indolealdimines are easily accessible from 7-formylindoles by standard Schiff base condensation with chiral amine building blocks; the 7-formylindoles in turn are synthesized from the corresponding 7-bromoindoles by the Rapoport synthesis, and the starting 7-bromoindoles are accessible from 2-bromoaniline by the classical Fischer indole synthesis. Three generations of chiral [N2O] and [N4] chromium(III) catalysts have been developed and evaluated in the enantioselective carbonylation of racemic propylene oxide with carbon monoxide using tetracarbonylcobaltate as the nucleophilic reagent for the insertion of carbon monoxide into the activated propylene oxide/chiral Lewis acid complex. The best catalyst out of 10 candidates showed at a temperature of 80 °C an activity of 37% conversion, 100% chemoselectivity, and 19% stereoselectivity.
Doi 10.1016/j.jorganchem.2009.04.013
Wosid WOS:000266884800005
Url http://linkinghub.elsevier.com/retrieve/pii/S0022328X09002599
Is Certified Translation No
Dupe Override No
Comments Source: Web of Science WOS:000266884800005
Is Public Yes
Keyword Asymmetric catalysis; Carbon monoxide; Propylene oxide; Indoles; [beta]-Butyrolactone; Poly(hydroxybutyric acid)
Is Qa No