Meera Gopinadh, Rohit K R, Saranya Salim, Anilkumar Gopinathan
School of Chemical Sciences, Mahatma Gandhi University Priyadarsini Hills P O. Kottayam Kerala 686 560 India
Advanced Molecular Materials Research Centre (AMMRC), Mahatma Gandhi University Priyadarsini Hills P O. Kottayam Kerala 686 560 India.
RSC Adv. 2020 Sep 30;10(59):36031-36041. doi: 10.1039/d0ra05150k. eCollection 2020 Sep 28.
Our continuously changing environment demands sensible and sustainable chemistry. Consequently, organic synthesis started to follow green chemistry principles in recent years. It is observed that microwave (MW) radiation has been widely used as a source of energy in organic synthesis in the past decade. The MW heating approach has evolved into a new green method in organic synthesis since it provides short reaction time, high yields, and high product purities along with a decrease in the rate of by-product formation. Solvent-free reaction protocols worked well under MW irradiation. All these features make MW assisted organic synthesis an environment-friendly approach. In organic synthesis, heterocycles are vital targets especially nitrogen-containing ones because of their prominent presence in natural products and widespread applications in pharmaceutical industries. Five membered nitrogen heterocycles include pyrroles, oxazoles, pyrrolidones, among which pyrroles are the most important ones due to their potent biological properties. Even though there are a variety of reaction protocols for the synthesis of pyrroles, a significant development materialized in MW assisted synthesis of pyrroles in the past few years. In this review, we focus on the developments in MW assisted synthesis of pyrroles and other five-membered nitrogen heterocycles.
我们不断变化的环境需要合理且可持续的化学。因此,近年来有机合成开始遵循绿色化学原则。据观察,在过去十年中,微波(MW)辐射已被广泛用作有机合成中的能源。微波加热方法已发展成为有机合成中的一种新的绿色方法,因为它提供了短反应时间、高收率和高产品纯度,同时副产物形成速率降低。无溶剂反应方案在微波辐射下效果良好。所有这些特性使微波辅助有机合成成为一种环境友好的方法。在有机合成中,杂环尤其是含氮杂环是重要的目标,因为它们在天然产物中大量存在且在制药行业有广泛应用。五元含氮杂环包括吡咯、恶唑、吡咯烷酮等,其中吡咯因其强大的生物学特性而最为重要。尽管有多种合成吡咯的反应方案,但在过去几年中,微波辅助合成吡咯有了显著进展。在本综述中,我们重点关注微波辅助合成吡咯及其他五元含氮杂环的进展。