Sosunovych Bohdan, Vashchenko Bohdan V, Andriashvili Vladyslav A, Grygorenko Oleksandr O
Enamine Ltd, Winston Churchill 78, Kyїv, 02094, Ukraine.
Taras Shevchenko National University of Kyiv, Volodymyrska Street 60, Kyїv, 01601, Ukraine.
Chem Rec. 2024 Feb;24(2):e202300258. doi: 10.1002/tcr.202300258. Epub 2023 Sep 27.
This review disclosed synthetic approaches to sulfonyl amides from non-sulfonyl halogenated precursors. Known methods were systematized into groups and subgroups according to the type of starting organosulfur compound. Thiols, disulfides, and sulfonamides form a group of S(II)-containing precursors, which are used in oxidative amination reactions. An important and versatile group for oxidative amination is represented with S(IV)-containing compounds, i. e., sufinates, sulfinamides, DMSO, N-sulfinyl-O-(tert-butyl)hydroxylamine, etc. A series of S(VI)-containing precursors for amination reactions (except sulfonyl halides) include sulfonic acids, sulfonyl azides, thiosulfonates, and sulfones. All approaches are represented with the most prominent examples of the resulting sulfonamides, which could be obtained in high yields mostly via short reaction sequences. Promising electrochemical methods for the preparation of sulfonamides from thiols, disulfides, sulfonamides, sulfinic acid derivatives, and dimethyl sulfoxide under mild and green conditions are also highlighted.
本综述揭示了从非磺酰卤代前体合成磺酰胺的方法。已知方法根据起始有机硫化合物的类型被系统地分为组和亚组。硫醇、二硫化物和磺酰胺形成一组含S(II)的前体,它们用于氧化胺化反应。含S(IV)的化合物,即亚磺酸盐、磺酰胺、二甲基亚砜、N-亚磺酰基-O-(叔丁基)羟胺等,是氧化胺化的一个重要且通用的组。一系列用于胺化反应的含S(VI)的前体(磺酰卤除外)包括磺酸、磺酰叠氮化物、硫代磺酸盐和砜。所有方法都以所得磺酰胺的最突出实例表示,这些实例大多可通过短反应序列以高收率获得。还强调了在温和绿色条件下由硫醇、二硫化物、磺酰胺、亚磺酸衍生物和二甲基亚砜制备磺酰胺的有前景的电化学方法。