| Literature DB >> 29508466 |
Peter H Huy1, Isabel Filbrich1.
Abstract
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 SN 2 inversion, which demonstrates the high practical value of the presented method.Entities:
Keywords: green chemistry; halogenation; nucleophilic substitution; organocatalysis; synthetic methods
Year: 2018 PMID: 29508466 DOI: 10.1002/chem.201800588
Source DB: PubMed Journal: Chemistry ISSN: 0947-6539 Impact factor: 5.236