Enantioselective Rhodium-catalyzed C–C Bond Activation of Cyclobutanones
作者:Souillart, Laetitia、Cramer, Nicolai
DOI:10.2533/chimia.2015.187
日期:——
The activation of carbon-carbon bonds has attracted much attention in the past decade. Despite important progress, the development of asymmetric reactions lags behind. For the first time, asymmetric rhodium(I)-catalyzed direct oxidative additions into enantiotopic C-C bonds of cyclobutanones could be realized. Subsequent carboacylation of tethered olefins and carbonyl groups of the generated rhoda(III)cyclopentanone
Asymmetric Rhodium(I)-Catalyzed C–C Activations with Zwitterionic Bis-phospholane Ligands
作者:Evelyne Parker、Nicolai Cramer
DOI:10.1021/om4011627
日期:2014.2.10
The development of unconventional ligand scaffolds is an important aspect to alter reaction pathways of transition-metal-catalyzed reactions. The nature of the counterion of cationic metal complexes plays an important role in the catalyst reactivity. We herein report a chiral anionic bidentate bis-phosphine ligand based on the popular phospholane scaffold. Subsequently, zwitterionic rhodium(I) complexes with no external counterion were synthesized, and their potential was evaluated in asymmetric carbon carbon bond activation of cyclobutanones. This type of rhodium complex allows, for a significantly lower reaction temperature than analogous cationic rhodium complexes and enables, for the first time, asymmetric transformations with up to 93.5:6.5 enantiomeric ratio.
Highly Enantioselective Rhodium(I)-Catalyzed Activation of Enantiotopic Cyclobutanone CC Bonds
functionalization of carbon–carbon σ bonds is a synthetic strategy that offers uncommon retrosynthetic disconnections. Despite progress in CCactivation and its great importance, the development of asymmetric reactions lags behind. Rhodium(I)‐catalyzed selective oxidative additions into enantiotopicCCbonds in cyclobutanones are reported. Even operating at a reaction temperature of 130 °C, the process is characterized