N. D. Zelinsky Institute of Organic Chemistry, Russian Academy of Sciences, 47 Leninsky Prospect, 119991 Moscow, Russian Federation.
Lomonosov Moscow State University, Leninskie Gory GSP-1,1-3, 119991 Moscow, Russian Federation.
J Org Chem. 2023 May 5;88(9):5661-5670. doi: 10.1021/acs.joc.3c00142. Epub 2023 Apr 7.
An approach to the synthesis of seven-membered systems via the chain elongation of nucleophilic propenes and subsequent 8π-electrocyclization is proposed. The cascade reaction yields either cycloheptadienes or bicycloheptenes, and the latter are formed via a 6π-electrocyclization of intermediate cycloheptadienyl anion which was proved to be reversible in a basic medium. The electrocyclic nature of the ring-closing reactions was supported by density functional theory and DLPNO/CCSD(T) calculations. Highly electron-deficient cycloheptatrienes can be obtained from cycloheptadienes or bicycloheptenes via oxidation either introduced into the cascade reaction or performed as a separate reaction, with the overall yield of up to 81%. The oxidation step was performed by means of a rarely encountered Cu(II)-catalyzed dehydrogenation of cycloheptadienes or bicycloheptenes, and so the reaction mechanism was proposed. Stable formally 8π-antiaromatic cycloheptatrienyl-anion containing compounds were obtained, and some correlations between their UV-vis spectra and the structure of the distorted cycloheptatrienyl-anion moiety were clarified. Additionally, a base-induced retro-[2 + 2]-cycloaddition in a bicycloheptene derivative gave cyanotetra(methoxycarbonyl)cyclopentadienyl cesium.
提出了一种通过亲核丙烯的链延伸和随后的 8π-电环化来合成七元体系的方法。该级联反应生成环庚二烯或双环庚烯,后者是通过中间体环庚二烯阴离子的 6π-电环化形成的,该中间体阴离子在碱性介质中被证明是可逆的。电环化反应的环封闭反应性质得到了密度泛函理论和 DLPNO/CCSD(T)计算的支持。高度缺电子的环庚三烯可以通过氧化从环庚二烯或双环庚烯中获得,氧化可以在级联反应中引入,也可以作为单独的反应进行,总收率高达 81%。氧化步骤通过一种罕见的 Cu(II)催化的环庚二烯或双环庚烯脱氢来进行,因此提出了反应机制。获得了稳定的、形式上含有 8π-反芳香性的环庚三烯基阴离子化合物,并阐明了它们的紫外可见光谱与其扭曲的环庚三烯基阴离子部分结构之间的一些关系。此外,在双环庚烯衍生物中,碱诱导的反-[2+2]-环加成得到了氰基四(甲氧羰基)环戊二烯基铯。