Nickel and Palladium
By combining catalytic cycles in tandem, we aim to easily access intriguing motifs of industrial and biological relevance. Our group successfully demonstrated the utility of the one-pot Heck alkylation/intramolecular cyclization and Hiyama alkylation/intramolecular cyclization for producing biologically relevant benzofuran compounds. Recently, we used palladium mesoionic singlet carbene catalysis to activate small molecules like azide and isocyanides, generating heterocumulene-like carbodiimides and ketenimines.
Focusing on bifunctional catalysis, we continued towards catalytic construction of C-C bonds using bifunctional nickel precatalysts supported over N/O-functionalized N-heterocyclic carbenes that performed the desired base-free Michael addition at room temperature.
Targeting the oxidative addition step ubiquitous in numerous C-C cross-coupling reactions, our research demonstrated that more electron-rich palladium N-heterocyclic carbene complexes of the (NHC)2PdX2 (X = halide) types were more efficient than the comparatively less electron-rich PEPPSI (Pyridine Enhanced Precatalyst Preparation, Stabilization and Initiation) themed (NHC)PdX2(pyridine) ones for several C-C bond forming reactions namely, the Suzuki-Miyaura cross-couplings. The trans- and cis-[(NHC)2PdX2] (X=Cl, Br) complexes, synthesized from the corresponding silver analogs, also showed a similar trend in Sonogashira cross-coupling. Besides the PEPPSI complexes, we have also designed O-functionalized N-heterocyclic carbene complexes of Pd(II) and Au(I). Our group further designed several palladium precatalysts for the Hiyama coupling, employing the more challenging and much-desired organosilicon reagents. Palladium N-heterocyclic carbene chemistry was extended to abnormal N-heterocyclic carbenes as precatalysts for Cu-free and amine-free Sonogashira coupling in air.
Our group also reported the Suzuki-Miyaura C-C cross-coupling of the more challenging aryl chloride substrates using homoscorpionate pyrazole-derived palladium complexes.