Publication | Open Access
Bi(I)-Catalyzed Transfer-Hydrogenation with Ammonia-Borane
197
Citations
46
References
2019
Year
Chemical EngineeringEngineeringCatalytic Transfer-hydrogenationElusive Bismuthine SpeciesBismuthinidene Catalyst PerformsOrganometallic CatalysisCatalysisMolecular CatalysisHydrogenChemistryInorganic SynthesisCatalytic Synthesis
A catalytic transfer-hydrogenation utilizing a well-defined Bi(I) complex as catalyst and ammonia-borane as transfer agent has been developed. This transformation represents a unique example of low-valent pnictogen catalysis cycling between oxidation states I and III, and proved useful for the hydrogenation of azoarenes and the partial reduction of nitroarenes. Interestingly, the bismuthinidene catalyst performs well in the presence of low-valent transition-metal sensitive functional groups and presents orthogonal reactivity compared to analogous phosphorus-based catalysis. Mechanistic investigations suggest the intermediacy of an elusive bismuthine species, which is proposed to be responsible for the hydrogenation and the formation of hydrogen.
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