Electrooxidative palladium- and enantioselective rhodium-catalyzed [3 + 2] spiroannulations.
Wen WeiAlexej ScheremetjewHarry L AndersonPublished in: Chemical science (2022)
Despite indisputable progress in the development of electrochemical transformations, electrocatalytic annulations for the synthesis of biologically relevant three-dimensional spirocyclic compounds has as of yet not been accomplished. In sharp contrast, herein, we describe the palladaelectro-catalyzed C-H activation/[3 + 2] spiroannulation of alkynes by 1-aryl-2-naphthols. Likewise, a cationic rhodium(iii) catalyst was shown to enable electrooxidative [3 + 2] spiroannulations via formal C(sp 3 )-H activations. The versatile spiroannulations featured a broad substrate scope, employing electricity as a green oxidant in lieu of stoichiometric chemical oxidants under mild conditions. An array of spirocyclic enones and diverse spiropyrazolones, bearing all-carbon quaternary stereogenic centers were thereby accessed in a user-friendly undivided cell setup, with molecular hydrogen as the sole byproduct.
Keyphrases
- room temperature
- reduced graphene oxide
- gold nanoparticles
- ionic liquid
- single cell
- metal organic framework
- magnetic resonance
- cell therapy
- visible light
- high throughput
- stem cells
- high resolution
- molecularly imprinted
- computed tomography
- single molecule
- amino acid
- mass spectrometry
- carbon dioxide
- aqueous solution
- solid phase extraction