Chaudhary Hiren R, Patel Divyang M
Department of Chemistry, Sankalchand Patel University, Visnagar, 384315, Gujarat, India.
Mol Divers. 2024 Dec 1. doi: 10.1007/s11030-024-11053-x.
In the past, mechanochemical approaches in organic synthesis were largely overlooked, but their perception within the synthetic community has shifted in recent years, marking a trend toward becoming mainstream. Mechanochemical multicomponent organic synthesis has garnered significant interest from both the academic and industrial chemical sectors. The efficiency and environmental friendliness of procedures conducted through mechanical activation have established mechanical procedures as prominent green techniques. Notably, utilizing solid starting materials under mechanochemical conditions empowers the development of novel multicomponent reactions that are often unfeasible in traditional solution-based processes. This capability not only enhances the diversity of accessible organic compounds but also sparks new avenues for innovative synthetic strategies. This approach facilitates the effective fulfillment of sustainable chemistry goals. In this context, we emphasize the major progress and advancements in mechanochemical multicomponent reactions from 2017 to 2024. This article covers the foremost multicomponent mechanosynthesis for developing organic molecules through carbon-carbon and carbon-heteroatom coupling reactions and multicomponent mechanosynthesis for monocyclic and fused heterocycles.
过去,有机合成中的机械化学方法在很大程度上被忽视,但近年来合成界对它们的看法发生了转变,标志着一种走向主流的趋势。机械化学多组分有机合成已引起学术和工业化学领域的极大兴趣。通过机械活化进行的反应的效率和环境友好性已将机械方法确立为突出的绿色技术。值得注意的是,在机械化学条件下使用固体起始原料能够开发出传统溶液法中通常不可行的新型多组分反应。这种能力不仅增加了可获得的有机化合物的多样性,还为创新的合成策略开辟了新途径。这种方法有助于有效实现可持续化学目标。在此背景下,我们强调了2017年至2024年机械化学多组分反应的主要进展。本文涵盖了通过碳-碳和碳-杂原子偶联反应开发有机分子的最重要的多组分机械合成以及单环和稠合杂环的多组分机械合成。