Institute of Organic Chemistry, RWTH Aachen University, Landoltweg 1, D-52056 Aachen, Germany.
Beilstein J Org Chem. 2007 Sep 25;3:25. doi: 10.1186/1860-5397-3-25.
The synthesis of sulfonimidamides involves the nucleophilic substitution of a sulfonimidoyl chloride with an amine. However, only four chlorinating systems have been reported for the preparation of the sulfonimidoyl chloride intermediates. Whereas some of them have shown a rather limited substrate spectrum, the most versatile and commonly used tert-butyl hypochlorite is known to be explosive. To establish alternative methods for the synthesis of these molecules is therefore desirable.
The preparation of various p-tolylsulfonimidamides through the reaction of the corresponding N-protected p-tolylsulfinamides and a number of amines in the presence of N-chlorosuccinimide was achieved at room temperature in 50-97% yield.
A convenient alternative procedure for the synthesis of sulfonimidamides from sulfinamides and various amines and sulfonamides using N-chlorosuccinimide as halogenating agent has been developed.
磺酰亚胺酰胺的合成涉及磺酰亚胺酰氯与胺的亲核取代。然而,仅报道了四种用于制备磺酰亚胺酰氯中间体的氯化系统。虽然其中一些显示出相当有限的底物谱,但最通用和常用的叔丁基次氯酸盐已知是爆炸物。因此,建立这些分子的替代合成方法是可取的。
通过在 N-氯代丁二酰亚胺的存在下,使相应的 N-保护的对甲苯磺酰亚胺与多种胺反应,在室温下以 50-97%的产率获得了各种对甲苯磺酰亚胺酰胺。
已经开发出一种使用 N-氯代丁二酰亚胺作为卤化剂,从磺酰胺和各种胺和磺胺制备磺酰亚胺酰胺的方便替代方法。