Publication | Closed Access
A Potassium Diboryllithate: Synthesis, Bonding Properties, and the Deprotonation of Benzene
25
Citations
41
References
2016
Year
Materials ScienceChemical EngineeringPotassium DiboryllithateEngineeringHeterocyclicBonding PropertiesB 2Organic ChemistryOrganometallic CatalysisDft CalculationsChemistrySupramolecular ChemistryDerivative (Chemistry)
Abstract A potassium diboryllithate (B 2 LiK) was synthesized and structurally characterized. DFT calculations, including NPA and AIM analyses of B 2 LiK, revealed ionic interactions between the two bridging boryl anions and Li + and K + . Upon standing in benzene, B 2 LiK deprotonated the solvent to form a hydroborane and a phenylborane. On the basis of DFT calculations, a detailed reaction mechanism, involving deprotonation and hydride/phenyl exchange processes, is proposed. An NBO analysis of the transition state for the deprotonation of benzene suggests that the deprotonation should be induced by the coordination of benzene to the K + .
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