We report herein the possibility to perform the hydrosilylation of carbonyls using actinide complexes as catalysts. While complexes of the uranyl ion [UO 2 ] 2+ have been poorly considered in catalysis, we show the potentialities of the Lewis acid [UO 2 (OTf) 2 ] ( 1 ) in the catalytic hydrosilylation of a series of aldehydes. [UO 2 (OTf) 2 ] proved to be a very active catalyst affording distinct reduction products depending on the nature of the reductant. With Et 3 SiH, a number of aliphatic and aromatic aldehydes are reduced into symmetric ethers, while i Pr 3 SiH yielded silylated alcohols. Studies of the reaction mechanism led to the isolation of aldehyde/uranyl complexes, [UO 2 (OTf) 2 (4-Me 2 N-PhCHO) 3 ], [UO 2 (μ-κ 2 -OTf) 2 (PhCHO)] n, and [UO 2 (μ-κ 2 -OTf)(κ 1 -OTf)(PhCHO) 2 ] 2, which have been fully characterized by NMR, IR, and single-crystal X-ray diffraction.
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Monsigny et al. (2019) studied this question.
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