Department of Chemistry, Drexel University, 3401 Chestnut St., Philadelphia, PA, 19104, USA.
Merck Inc., 90 E. Scott Ave, Rahway, NJ, 07065, USA.
Nat Commun. 2022 Oct 28;13(1):6444. doi: 10.1038/s41467-022-33807-7.
A dearomatization-dislocation-coupling cascade rapidly transforms aromatic isocyanides into highly functionalized cyclohexadienes. The facile cascade installs an exceptional degree of molecular complexity: three carbon-carbon bonds, two quaternary stereocenters, and three orthogonal functionalities, a cyclohexadiene, a nitrile, and an isocyanide. The tolerance of arylisocyanides makes the method among the mildest dearomatizations ever reported, typically occurring within minutes at -78 °C. Experimental and computational analyses implicate an electron transfer-initiated mechanism involving an unprecedented isocyanide rearrangement followed by radical-radical anion coupling. The dearomatization is fast, proceeds via a complex cascade mechanism supported by experimental and computational insight, and provides complex, synthetically valuable cyclohexadienes.
脱芳构化-重排偶联级联反应可快速将芳香异氰化物转化为高官能化的环己二烯。该级联反应易于进行,可实现极高的分子复杂度:三个碳-碳键、两个季碳立体中心和三个正交官能团,包括环己二烯、腈和异氰化物。芳基异氰化物的耐受性使得该方法成为迄今为止报道的最温和的脱芳构化反应之一,通常在-78°C 下几分钟内即可完成。实验和计算分析表明,该反应涉及电子转移引发的机制,包括前所未有的异氰化物重排,随后是自由基-自由基阴离子偶联。脱芳构化反应速度快,通过实验和计算见解支持的复杂级联机制进行,可提供复杂且具有合成价值的环己二烯。