Publication | Closed Access
Advances in Base-Metal Catalysis: Development of a Screening Platform for Nickel-Catalyzed Borylations of Aryl (Pseudo)halides with B<sub>2</sub>(OH)<sub>4</sub>
40
Citations
26
References
2018
Year
EngineeringBase-metal CatalysisChemistryNickel-catalyzed BorylationsChemical EngineeringModel Aryl BromideOrganometallic CatalysisExperimental DesignMaterials ScienceCatalysisHydrogenScreening PlatformCatalytic ProcessCatalytic SynthesisHeterogeneous CatalysisRapid Lead IdentificationMolecular CatalysisReaction ProcessChemical Kinetics
Investigations into nickel-catalyzed borylation reactions have led to the development of an experimental design of 24 reaction conditions for rapid lead identification. A case study on the borylation of a model aryl bromide with B2(OH)4 prompted a series of mechanistic and stability studies to better understand the catalytic cycle and factors that affect robustness. HTEx was employed to study the effect of a series of scavengers on the remediation of nickel from the reaction stream. These combined results have generated an increased understanding of nickel-catalyzed borylation reactions and set the stage for their expanded use in process chemistry.
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