Institute of Organic Chemistry, Saarland University, P. O. Box 151150, 66041, Saarbruecken, Germany.
Chemistry. 2018 May 23;24(29):7410-7416. doi: 10.1002/chem.201800588. Epub 2018 Apr 26.
A general formamide-catalyzed protocol for the efficient transformation of alcohols into alkyl chlorides, which is promoted by substoichiometric amounts (down to 34 mol %) of inexpensive trichlorotriazine (TCT), is introduced. This is the first example of a TCT-mediated dihydroxychlorination of an OH-containing substrate (e.g., alcohols and carboxylic acids) in which all three chlorine atoms of TCT are transferred to the starting material. The consequently enhanced atom economy facilitates a significantly improved waste balance (E-factors down to 4), cost efficiency, and scalability (>50 g). Furthermore, the current procedure is distinguished by high levels of functional-group compatibility and stereoselectivity, as only weakly acidic cyanuric acid is released as exclusive byproduct. Finally, a one-pot protocol for the preparation of amines, azides, ethers, and sulfides enabled the synthesis of the drug rivastigmine with twofold S 2 inversion, which demonstrates the high practical value of the presented method.
本文介绍了一种通用的三氯均三嗪(TCT)促进的、甲酰胺催化的、将醇高效转化为烷基氯的方法,该方法只需使用亚化学计量的 TCT(低至 34mol%)。这是首例 TCT 介导的含 OH 底物(如醇和羧酸)的二羟氯化反应,其中 TCT 的所有三个氯原子均转移至起始原料。因此,原子经济性得到显著提高,从而极大地改善了废物平衡(E 因子低至 4)、提高了成本效益和可扩展性(>50g)。此外,该方法还具有高官能团相容性和立体选择性,因为仅释放出作为唯一副产物的弱酸性氰尿酸。最后,通过一锅法制备胺、叠氮化物、醚和硫化物,实现了具有两倍 S 2 反转的药物利斯的明的合成,这证明了所提出方法的高实用价值。