Methane Beryllation Catalyzed by a Base Metal Complex

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Abstract

The homogeneous catalytic functionalization of methane is extremely challenging due to the relative nonpolarity and high C-H bond strength of this hydrocarbon. Here, using catalytic quantities (10 mol %) of CpMn(CO)3 or Cp*Re(CO)3, the conversion of methane and benzene C-H bonds to C-Be and H-Be bonds by CpBeBeCp has been achieved under photochemical conditions. Possible intermediates in the beryllation reactions─trans-bis(beryllyl)-manganese and -rhenium complexes─were also isolated. Quantum chemical calculations indicate that the inherent properties of the beryllyl ligands─which are powerfully σ-donating and feature highly Lewis acidic beryllium centers─are decisive in enabling methane functionalization by these systems.

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Boronski, J. T., Crumpton, A. E., Struijs, J. J. C., & Aldridge, S. (2025). Methane Beryllation Catalyzed by a Base Metal Complex. Journal of the American Chemical Society, 147(12), 10073–10077. https://doi.org/10.1021/jacs.5c02179

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