Rammohan Aluru, Krinochkin Alexey P, Khasanov Albert F, Kopchuk Dmitry S, Zyryanov Grigory V
Ural Federal University, 19 Mira St., Ekaterinburg, 620002, Russian Federation.
I. Ya. Postovsky Institute of Organic Synthesis, Ural Division of the Russian Academy of Sciences, 22 S. Kovalevskoy St., Ekaterinburg, 620219, Russian Federation.
Top Curr Chem (Cham). 2022 Aug 11;380(5):43. doi: 10.1007/s41061-022-00398-2.
The Diels-Alder reaction (DAR) is found in myriad applications in organic synthesis and medicinal chemistry for drug development, as it is the method of choice for the expedient synthesis of complex natural compounds and innovative materials including nanomaterials, graphene expanses, and polymeric nanofibers. Furthermore, the greatest focus of attention of DARs is on the consistent reaction procedure with stimulus yields by highly stereo- and regioselective mechanistic pathways. Therefore, the present review is intended to summarize conventional solvent-free (SF) DARs for the expedient synthesis of heterocyclic compounds and materials. In particular, this review deals with the DARs of mechanochemical grinding, catalysis (including stereoselective catalysts), thermal, and electromagnetic radiation (such as microwave [MW], infrared [IR], and ultraviolet [UV] irradiation) in SF procedures. Therefore, this comprehensive review validates the application of DARs to pharmaceutical innovations and biorenewable materials through consistent synthetic approaches.
狄尔斯-阿尔德反应(DAR)在有机合成和药物开发的药物化学中有无数应用,因为它是快速合成复杂天然化合物和创新材料(包括纳米材料、石墨烯片和聚合物纳米纤维)的首选方法。此外,狄尔斯-阿尔德反应最受关注的是通过高度立体和区域选择性的机理途径实现具有刺激产率的一致反应过程。因此,本综述旨在总结用于快速合成杂环化合物和材料的传统无溶剂(SF)狄尔斯-阿尔德反应。特别是,本综述涉及无溶剂过程中的机械化学研磨、催化(包括立体选择性催化剂)、热和电磁辐射(如微波[MW]、红外[IR]和紫外线[UV]照射)的狄尔斯-阿尔德反应。因此,这篇全面的综述通过一致的合成方法验证了狄尔斯-阿尔德反应在药物创新和生物可再生材料中的应用。