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Seven‐Coordinate Ruthenium Complex with an SiNN‐Pincer Ligand as a Catalyst for Vinyl C─H Deuteration of Olefins

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Seven-coordinate ruthenium complexes with an SiNN-pincer ligand were synthesized and used for catalytic deuteration reactions. All three vinyl C(sp2)─Hs of mono-substituted olefins were selectively deuterated in high deuterium ratio.


Abstract

Seven-coordinate ruthenium complexes 1a and 1b, featuring silyl–2,2´-bipyridine SiNN-pincer ligands with i-Pr and t-Bu groups on Si, respectively, were synthesized. Their capped octahedral structures were revealed by single-crystal X-ray diffraction study. The stoichiometric reactions of 1a and 1b with styrene in THF afforded η2-silylalkene chelate complexes. In contrast, performing the same reaction using 1a in C6D6 resulted in the liberation of deuterated styrene (PhDC═CD2), alongside the formation of a deuterated η2-silylalkene complex. Complex 1a exhibited efficient catalytic activity for the triple deuteration of vinyl hydrogens in mono-substituted olefins with C6D6 to afford RDC═CD2 (R = Ph, C6H4-4-OMe, t-Bu) with high deuterium incorporation (92%–99%D).

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