Timmann Sven, Feng Zeyu, Alcarazo Manuel
Institut für Organische und Biomolekulare Chemie, Georg-August University Göttingen, Tammannstr. 2, 37077, Göttingen, Germany.
Chemistry. 2024 Dec 13;30(70):e202402768. doi: 10.1002/chem.202402768. Epub 2024 Nov 5.
The use of sulfonium salts in organic synthesis has experienced a dramatic increase during the last years that can arguably be attributed to three main factors; the development of more direct and efficient synthetic methods that make easily available sulfonium reagents of a wide structural variety, their intrinsic thermal stability, which facilitates their structural modification, handling and purification even on large scale, and the recognition that their reactivity resembles that of hypervalent iodine compounds and therefore, they can be used as replacement of such reagents for most of their uses. This renewed interest has led to the improvement of already existing reactions, as well as to the discovery of unprecedented transformations; in particular, by the implementation of photocatalytic protocols. This review aims to summarize the most recent advancements on the area focusing on the work published during and after 2020. The scope of the methods developed will be highlighted and their limitations critically evaluated.
近年来,锍盐在有机合成中的应用显著增加,这可以说是由三个主要因素导致的;开发了更直接、高效的合成方法,使得结构多样的锍试剂易于获得;其固有的热稳定性,便于其结构修饰、处理和大规模纯化;以及认识到它们的反应性类似于高价碘化合物,因此在大多数应用中可以用作此类试剂的替代品。这种新的兴趣导致了现有反应的改进以及前所未有的转化反应的发现;特别是通过光催化方案的实施。本综述旨在总结该领域的最新进展,重点关注2020年及之后发表的工作。将突出所开发方法的范围,并对其局限性进行批判性评估。