Koeritz Mason T, Banovetz Haley K, Prell Sean A, Stanley Levi M
Department of Chemistry, Iowa State University Ames Iowa 50011 USA
Chem Sci. 2022 May 20;13(26):7790-7795. doi: 10.1039/d2sc01840c. eCollection 2022 Jul 6.
We report Ni-catalyzed dearylative cyclocondensation of aldehydes, alkynes, and triphenylborane. The reaction is initiated by oxidative cyclization of the aldehyde and alkyne coupling partners to generate an oxanickelacyclopentene which reacts with triphenylborane to form oxaboranes. This formal dearylative cyclocondensation reaction generates oxaboranes in moderate-to-high yields (47-99%) with high regioselectivities under mild reaction conditions. This approach represents a direct and modular synthesis of oxaboranes which are difficult to access using current methods. These oxaboranes are readily transformed into valuable building blocks for organic synthesis and an additional class of boron heterocycles. Selective homocoupling forms oxaboroles, oxidation generates aldol products, and reduction and arylation form substituted allylic alcohols.
我们报道了镍催化的醛、炔烃和三苯基硼的脱芳基环缩合反应。该反应由醛和炔烃偶联伙伴的氧化环化引发,生成氧杂镍环戊烯,其与三苯基硼反应形成氧硼烷。这种形式上的脱芳基环缩合反应在温和的反应条件下以中等到高的产率(47 - 99%)和高区域选择性生成氧硼烷。这种方法代表了一种直接且模块化的氧硼烷合成方法,而使用当前方法难以获得这些氧硼烷。这些氧硼烷很容易转化为用于有机合成的有价值的结构单元以及另一类硼杂环化合物。选择性均偶联形成氧硼杂环戊二烯,氧化生成醛醇产物,还原和芳基化形成取代的烯丙醇。