Abu Yousef Muhammad, Matsubara Ryosuke
Department of Chemistry, Graduate School of Science, Kobe University 1-1 Rokkodai-cho, Nada-ku Kobe 657-8501 Japan
RSC Adv. 2023 Feb 9;13(8):5228-5248. doi: 10.1039/d3ra00189j. eCollection 2023 Feb 6.
This review highlights recent developments in the synthesis and application of furoxan. The chemistry of furoxan is relatively underdeveloped compared to that of other heterocycles owing to its difficult synthesis, which is ascribed to the labile nature of this molecule under various reaction conditions. Nevertheless, recent studies have conducted a variety of bond-forming reactions on the furoxan ring a post-ring introduction of substituents (PRIS) strategy. This strategy enables the synthesis of furoxan molecules of interest more directly than the conventional methods that rely on the pre-installation of substituents on the furoxan ring precursors. In this review, the PRIS strategy for furoxan synthesis is classified and discussed according to the type of bond formed. Additionally, recent progress in the application of furoxan molecules, predominantly facilitated by the development of new synthetic methods, is covered in this review.
本综述重点介绍了呋咱合成与应用的最新进展。与其他杂环化合物相比,呋咱的化学研究相对滞后,这是由于其合成困难,原因在于该分子在各种反应条件下性质不稳定。尽管如此,最近的研究已在呋咱环上进行了多种成键反应——一种环后引入取代基(PRIS)策略。与依赖于在呋咱环前体上预先安装取代基的传统方法相比,该策略能够更直接地合成目标呋咱分子。在本综述中,根据形成的键的类型对呋咱合成的PRIS策略进行了分类和讨论。此外,本综述还涵盖了呋咱分子应用方面的最新进展,这主要得益于新合成方法的发展。