School of Chemistry, University of Bristol, Bristol, BS8 1TS, UK.
Angew Chem Int Ed Engl. 2017 Aug 7;56(33):9752-9756. doi: 10.1002/anie.201703894. Epub 2017 Jul 12.
The enantiospecific coupling of secondary and tertiary boronic esters to aromatics has been investigated. Using p-lithiated phenylacetylenes and a range of boronic esters coupling has been achieved by the addition of N-bromosuccinimide (NBS). The alkyne functionality of the intermediate boronate complex reacts with NBS triggering the 1,2-migration of the group on boron to carbon giving a dearomatized bromoallene intermediate. At this point elimination and rearomatization occurs with neopentyl boronic esters, giving the coupled products. However, using pinacol boronic esters, the boron moiety migrates to the adjacent carbon resulting in formation of ortho boron-incorporated coupled products. The synthetic utility of the boron incorporated product has been demonstrated by orthogonal transformation of both the alkyne and boronic ester functionalities.
已研究了仲硼酸酯和叔硼酸酯与芳烃的对映选择性偶联。通过添加 N-溴代琥珀酰亚胺(NBS),用 p-锂化苯乙炔和一系列硼酸酯实现了偶联。中间体硼酸酯络合物的炔基官能团与 NBS 反应,触发硼上基团向碳的 1,2-迁移,得到去芳构化的溴烯丙基中间产物。此时,用新戊硼酸酯进行消除和再芳构化,得到偶联产物。然而,使用频哪醇硼酸酯时,硼原子迁移到相邻的碳原子上,导致形成邻位硼取代的偶联产物。通过对炔基和硼酸酯官能团的正交转化,证明了硼取代产物的合成实用性。