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Sustainable Amine Synthesis: Iron Catalyzed Reactions of Hydrosilanes with Imines, Amides, Nitroarenes and Nitriles

机译:可持续胺合成:氢硅烷与亚胺,酰胺,硝酸和硝酸盐的铁催化反应

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Iron catalyzed organic synthesis has emerged as a sustainable chemistry due to the highly competitive cost, high natural abundance and ecologically acceptable properties of iron. Moreover, its extensive range of oxidation states i. e. -II to +VI provides numerous opportunities to perform multiple organic reactions. Recently iron catalysis has started competing the established precious metals. Among organic scaffolds, amines are important building blocks that are useful in the various fields starting from drugs, crop protection chemicals to dyes and pigments. Typically, hydrogenation or reduction of func- tional groups such as imines, amides, nitroarenes and nitriles results into amines. In this context, homogeneous iron catalyzed hydrosilylation is a highly promising alternative to traditional hydrogenation and other reduction reactions. This review is focused on the synthesis of amine and its derivatives via hydrosilylation of imines, amides, nitroarenes and nitriles using iron as a catalyst. Some of the reduction methods of these functional groups that may not follow the typical hydrosilylation pathway are also included in this review due to their strong relevance to the theme. The phenomenal progress in this focused area is summarized to witness this trans- formation towards sustainable development in the field of amine synthesis.
机译:铁催化的有机合成已成为一种可持续的化学,由于铁的高度竞争成本,高​​自然丰度和生态上可接受的特性。此外,它的氧化状态范围很广。 e。 -II至 +VI提供了许多有机反应的机会。最近,铁催化已经开始竞争已建立的贵金属。在有机支架中,胺是重要的基础,在从药物,农作物保护化学物质到染料和颜料的各个领域都有用。通常,氢化或还原诸如亚胺,酰胺,硝酸和硝酸盐等功能基团导致胺成。在这种情况下,均质铁催化的氢硅烷化是传统氢化和其他还原反应的高度有希望的替代品。这篇综述的重点是通过使用铁作为催化剂的亚胺,酰胺,硝化剂和硝酸盐的氢硅烷化及其衍生物的合成。这些官能团的某些还原方法可能不遵循典型的氢硅烷化途径,因为它们与主题的很强相关性。总结了这个重点区域中的惊人进步,目的是见证胺合成领域可持续发展的这种转移。

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