Cu-catalyzed carboboration of acetylene with Michael acceptors

铜催化乙炔与迈克尔受体的碳硼化反应

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Abstract

A copper-catalyzed three-component carboboration of acetylene with B(2)Pin(2) and Michael acceptors is reported. In this reaction, a cheap and abundant C2 chemical feedstock, acetylene, was used as a starting material to afford cis-alkenyl boronates bearing a homoallylic carbonyl group. The reaction was robust and could be reliably performed on the molar scale. Furthermore, the resulting cis-alkenyl boronates could be converted to diverse functionalized molecules with ease.

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