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Ruthenium tris(σ-B-H) borate complexes: synthesis, structure, and reactivity.

The coordination of the B-H bond to a transition metal is fundamentally intriguing due to its connection with the transition metal-mediated B-H bond activation mechanism and catalysis. Most of the… Click to show full abstract

The coordination of the B-H bond to a transition metal is fundamentally intriguing due to its connection with the transition metal-mediated B-H bond activation mechanism and catalysis. Most of the reported examples are σ-borane/borate complexes containing one or two σ-B-H bonds. However, examples of compounds containing three σ-B-H bonds are still much rarer. Herein, we report a facile approach for the synthesis of rare transition metal tris(σ-B-H) borate complexes by the salt elimination protocol using [Cp*RuCl]4 and lithium trihydroborates Li[ArBH3] containing 2,6-disubstituted aryl groups. These complexes have remarkable thermal stability in solution. In addition, this novel class of compounds has the unusual σ-complex that features three labile σ-B-H bonds. Our studies on these new species demonstrate that the coordination σ-B-H bond can undergo H/D exchange with D2 and ligand substitution reactions with PPh3, PCy3 and IPr2Me2. These results provide new approaches for the synthesis of both tris(σ-B-H) borates and bis(σ-B-H) borates.

Keywords: borate; ruthenium tris; transition metal; borate complexes; synthesis; tris borate

Journal Title: Dalton transactions
Year Published: 2022

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