Department of Chemical Sciences, Indian Institute of Science Education and Research Kolkata, Mohanpur, 741246, Nadia, West Bengal, India.
Chemistry. 2019 Nov 7;25(62):14064-14071. doi: 10.1002/chem.201902702. Epub 2019 Oct 9.
Azulene is a non-alternant non-benzenoid aromatic system, and in turn, it possesses unusual photophysical properties. Azulene-based conjugated systems have received increasing interest in recent years as optoelectronic materials. Despite the routes available for the preparation of substituted azulene derivatives, there remain few methods that allow regioselective substitution on the seven-membered ring of azulenes due to the subtle reactivity difference among the various positions. This report explores the reactivity of substituted tropolones as the azulene precursors and also provides a new method to create 5-substituted azulenes. The reaction of cyanoacetate enolate with unsubstituted 2-methoxytropone affords azulene through the attack of the nucleophile on the C-2 center (normal pathway). We have observed that 3-substituted 2-methoxytropones undergo steric-guided nucleophilic addition at the C-7 center (abnormal pathway) to afford 5-substituted azulene derivatives. Based on this observation and DFT calculation, a new synthetic strategy is devised for the regioselective synthesis of 5-substituted multifunctional azulenes, which cannot be accessed by any other method.
薁是一种非交替非苯系的芳香体系,因此具有不同寻常的光物理性质。薁基共轭体系作为光电材料近年来受到越来越多的关注。尽管已经有多种方法可用于制备取代薁衍生物,但由于薁环上各个位置的反应性差异很小,因此仍然很少有方法可以实现薁环的区域选择性取代。本报告探讨了取代的托品酮作为薁前体的反应性,并提供了一种合成 5-取代薁的新方法。氰乙酸盐烯醇化物与未取代的 2-甲氧基托品酮反应,通过亲核试剂进攻 C-2 中心(正常途径)生成薁。我们观察到 3-取代的 2-甲氧基托品酮经历空间位阻导向的亲核加成,在 C-7 中心(异常途径)生成 5-取代薁衍生物。基于这一观察和 DFT 计算,设计了一种新的合成策略,用于 5-取代多功能薁的区域选择性合成,这是其他任何方法都无法实现的。