Departamento de Química Orgánica, Universidad de La Laguna, Avda. Astrofísico Francisco Sánchez 3, 38206 La Laguna, Tenerife, Spain.
Instituto de Bio-Orgánica Antonio González, Universidad de La Laguna, Avda. Astrofísico Francisco Sánchez 3, 38206 La Laguna, Tenerife, Spain.
Molecules. 2021 Mar 15;26(6):1629. doi: 10.3390/molecules26061629.
Cyclic products can be obtained through the intramolecular version of the Nicholas reaction, which requires having the nucleophile connected to the alkyne unit. Here, we report the synthesis of 1-oxa-3-cyclooctynes starting from commercially available (1,3)-camphoric acid. The strategy is based on the initial preparation of propargylic alcohols, complexation of the triple bond with Co(CO), and treatment with BF·EtO to induce an intramolecular Nicholas reaction with the free hydroxyl group as nucleophile. Finally, oxidative deprotection of the alkyne afforded the cyclooctynes in good yields. Notably, large-sized R substituents at the chiral center connected to the O atom were oriented in such a way that steric interactions were minimized in the cyclization, allowing the formation of cyclooctynes exclusively with configuration, in good agreement with theoretical predictions. Moreover, preliminary studies demonstrated that these cyclooctynes were reactive in the presence of azides yielding substituted triazoles.
可以通过分子内的 Nicholas 反应获得环状产物,这要求亲核试剂连接到炔烃单元上。在这里,我们报告了从商业可得的(1,3)-莰酸出发合成 1-氧杂-3-环辛炔。该策略基于炔丙醇的初步制备、三键与 Co(CO)的络合以及用 BF·EtO 处理以诱导带有游离羟基的分子内 Nicholas 反应作为亲核试剂。最后,通过氧化脱保护得到炔烃,以良好的收率得到环辛炔。值得注意的是,连接到 O 原子的手性中心的大尺寸 R 取代基以这样的方式定向,即最小化了环化过程中的空间位阻,允许仅以 构型形成环辛炔,这与理论预测很好地一致。此外,初步研究表明,这些环辛炔在叠氮化物存在下是反应性的,生成取代的三唑。