Silicon-oriented regio- and enantioselective rhodium-catalyzed hydroformylation

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Abstract

Hydroformylation of 1,2-disubstituted alkenes usually occurs at the α position of the directing heteroatom such as oxygen atom and nitrogen atom. By contrast, to achieve hydroformylation on the β position of the heteroatom is a tough task. Herein, we report the asymmetric rhodium-catalyzed hydroformylation of 1,2-disubstituted alkenylsilanes with excellent regioselectivity at the β position (relative to the silicon heteroatom) and enantioselectivity. In a synthetic sense, we achieve the asymmetric hydroformylation on the β position of the oxygen atom indirectly by using the silicon group as a surrogate for the hydroxyl. Density functional theory (DFT) calculations are carried out to examine energetics of the whole reaction path for Rh/YanPhos-catalyzed asymmetric hydroformylation and understand its regioselectivity and enantioselectivity. Our computational study suggests that the silicon group can activate the substrate and is critical for the regioselectivity.

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You, C., Li, X., Yang, Y., Yang, Y. S., Tan, X., Li, S., … Zhang, X. (2018). Silicon-oriented regio- and enantioselective rhodium-catalyzed hydroformylation. Nature Communications, 9(1). https://doi.org/10.1038/s41467-018-04277-7

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