Nickel Catalyzed Carbonylative Cross Coupling for Direct Access to Isotopically Labeled Alkyl Aryl Ketones
Permanent lenke
https://hdl.handle.net/10037/35297Dato
2024-08-15Type
Journal articleTidsskriftartikkel
Forfatter
Mühlfenzl, Kim; Enemærke, Vitus; Gahlawat, Sahil; Golbækdal, Peter; Munksgaard-Ottosen, Nikoline; Neumann, Karoline; Hopmann, Kathrin Helen; Norrby, Per-Ola; Elmore, Charles; Skrydstrup, TroelsSammendrag
Here we present an effective nickel-catalyzed carbonylative cross-coupling for direct access to alkyl aryl ketones from readily accessible redox-activated tetrachlorophthalimide esters and aryl boronic acids. The methodology, which is run employing only 2.5 equivalents of CO and simple Ni(II) salts as the metal source, exhibits a broad substrate scope under mild conditions. Furthermore, this carbonylation chemistry provides an easy switch between isotopologues for stable (13CO) and radioactive (14CO) isotope labeling, allowing its adaptation to the late-stage isotope labeling of pharmaceutically relevant compounds. Based on DFT calculations as well as experimental evidence, a catalytic cycle is proposed involving a carbon-centered radical formed via nickel(I)-induced outer-sphere decarboxylative fragmentation of the redox-active ester.
Er en del av
Gahlawat, S. (2024). Computational Approach to Molecular Reactivity of Transition Metal Complexes. (Doctoral thesis). https://hdl.handle.net/10037/35298Forlag
WileySitering
Mühlfenzl, Enemærke, Gahlawat, Golbækdal, Munksgaard-Ottosen, Neumann, Hopmann, Norrby, Elmore, Skrydstrup. Nickel Catalyzed Carbonylative Cross Coupling for Direct Access to Isotopically Labeled Alkyl Aryl Ketones. Angewandte Chemie. 2024Metadata
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