Borah Biplob, Chowhan L Raju
School of Applied Material Sciences, Centre for Applied Chemistry, Central University of Gujarat Gandhinagar-382030 India
RSC Adv. 2022 May 11;12(22):14022-14051. doi: 10.1039/d2ra02063g. eCollection 2022 May 5.
Heterocycles of synthetic and natural origin are a well-established class of compounds representing a broad range of organic molecules that constitute over 60% of drugs and agrochemicals in the market or research pipeline. Considering the vast abundance of these structural motifs, the development of chemical processes providing easy access to novel complex target molecules by introducing environmentally benign conditions with the main focus on improving the cost-effectiveness of the chemical transformation is highly demanding and challenging. Accordingly, sonochemistry appears to be an excellent alternative and a highly feasible environmentally benign energy input that has recently received considerable and steadily increasing interest in organic synthesis. However, the involvement of transition-metal-catalyst(s) in a chemical process often triggers an unintended impact on the greenness or sustainability of the transformation. Consequently, enormous efforts have been devoted to developing metal-free routes for assembling various heterocycles of medicinal interest, particularly under ultrasound irradiation. The present review article aims to demonstrate a brief overview of the current progress accomplished in the ultrasound-assisted synthesis of pharmaceutically relevant diverse heterocycles using transition-metal-free catalysis.
合成和天然来源的杂环是一类成熟的化合物,代表了广泛的有机分子,在市场上或研究中的药物和农用化学品中占比超过60%。鉴于这些结构单元的数量众多,开发化学过程以通过引入环境友好条件来轻松获得新型复杂目标分子,主要侧重于提高化学转化的成本效益,这是极具挑战性的。因此,声化学似乎是一种极好的替代方法,也是一种高度可行的环境友好型能量输入方式,最近在有机合成中受到了相当大且持续增加的关注。然而,过渡金属催化剂参与化学过程往往会对转化的绿色性或可持续性产生意想不到的影响。因此,人们投入了大量精力来开发无金属路线,以组装各种具有药用价值的杂环,特别是在超声辐射下。本综述文章旨在简要概述在使用无过渡金属催化的超声辅助合成药学相关多样杂环方面所取得的当前进展。