| Literature DB >> 29266429 |
Youai Qiu1, Abraham Mendoza1, Daniels Posevins1, Fahmi Himo1, Marcin Kalek2, Jan E Bäckvall1.
Abstract
The asymmetric palladium-catalyzed oxidative carbocyclization-borylation of enallenes, employing a chiral phosphoric acid as co-catalyst, constitutes an efficient and convenient entry into functionalized building blocks with cyclopentene scaffolds in high enantiopurity. Up till now there has been a lack of knowledge concerning the origin of enantioselectivity of this reaction as well as the absolute configuration of the product. Herein, we report the crystal structure of one of the compounds generated via this carbocyclization, providing the link between the configuration of the products and the configuration of the chiral phosphoric acid used in the reaction. Furthermore, the origin of the enantioselectivity is thoroughly investigated with density functional theory (DFT) calculations. By careful examination of different possible coordination modes, it is shown that the chiral phosphoric acid and the corresponding phosphate anion serve as ligands for palladium during the key stereoselectivity-determining cyclization step. In addition, we examine reactions wherein an extra chiral reagent, a p-benzoquinone containing a chiral sulfoxide, is used. The combined experimental and theoretical studies provide insight into the details of complexation of palladium with various species present in the reaction mixture, furnishing a general understanding of the factors governing the stereoselectivity of this and related catalytic reactions.Entities:
Keywords: asymmetric catalysis; chiral phosphoric acid; computational chemistry; oxidative carbocyclization; palladium
Year: 2018 PMID: 29266429 DOI: 10.1002/chem.201705239
Source DB: PubMed Journal: Chemistry ISSN: 0947-6539 Impact factor: 5.236