硼氢化
化学
过渡金属
键裂
单独一对
催化作用
酰胺
单一债券
立体化学
有机化学
分子
烷基
作者
Sida Li,Chaopeng Hu,Liu Leo Liu,Lipeng Wu
标识
DOI:10.1002/anie.202412368
摘要
Selective hydroboration of C−C single bonds presents a fundamental challenge in the chemical industry. Previously, only catalytic systems utilizing precious metals Ir and Rh, in conjunction with N‐ and P‐ ligands, could achieve this, ensuring bond cleavage and selectivity. In sharp contrast, we discovered an unprecedented and general transition‐metal‐free system for the hydroboration of C−C single bonds. This methodology is transition‐metal and ligand‐free and surpasses the transition‐metal systems regarding chemo‐ and regioselectivities, substrate versatility, or yields. In addition, our system tolerates various functional groups such as Ar−X (X = halides), heterocyclic rings, ketones, esters, amides, nitro, nitriles, and C=C double bonds, which are typically susceptible to hydroboration in the presence of transition metals. As a result, a diverse range of γ‐boronated amines with varied structures and functions has been readily obtained. Experimental mechanistic studies, density functional theory (DFT), and intrinsic bond orbital (IBO) calculations unveiled a hydroborane‐promoted C−C bond cleavage and hydride‐shift reaction pathway. The carbonyl group of the amide suppresses dehydrogenation between the free N−H and hydroborane. The lone pair on the nitrogen of the amide facilitates the cleavage of C−C bonds in cyclopropanes.
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