Physics and Chemistry Faculty, Alzahra University, Vanak, Tehran, 1993893973, Iran.
Mol Divers. 2019 Nov;23(4):875-883. doi: 10.1007/s11030-018-9908-2. Epub 2019 Jan 11.
Novel-substituted pyrazoles were synthesized using an aminal-based approach. The key steps in the synthetic strategy involve the formation of 1,1-dihydrazino-2-nitroethylene from hydrazine hydrate with nitro ketene dithioacetal and its reaction with Knoevenagel adduct derived from the corresponding aldehyde and malononitrile in ethanol media. The formation of 5-membered pyrazole ring is confirmed based on the electrostatic surface potential computed by density functional theory. This strategy can provide a concise and eco-friendly route for easy access to the highly substituted pyrazoles derivatives in excellent yields using four simple and readily available building blocks under mild conditions and particularly attractive due to features such as atom economy, high yield and mild condition.
新型取代吡唑啉是通过亚胺基方法合成的。该合成策略的关键步骤包括:水合肼与硝基烯二硫缩醛反应生成 1,1-二氢腙-2-亚硝基乙烯,然后在乙醇介质中与相应醛和丙二腈的 Knoevenagel 加成物反应。根据密度泛函理论计算的静电表面势能,证实了五元吡唑环的形成。该策略可以提供一条简洁、环保的路线,使用四个简单易得的构建块,在温和条件下以优异的收率轻松获得高度取代的吡唑啉衍生物,由于原子经济性、高收率和温和条件等特点,该策略特别有吸引力。