Haufe Günter
Organisch-Chemisches Institut, Westfälische Wilhelms-Universität Münster, Corrensstraße 40, D-48149, Münster, Germany.
Chem Rec. 2023 Sep;23(9):e202300140. doi: 10.1002/tcr.202300140. Epub 2023 May 25.
For nucleophilic monofluorination, amine/HF reagents such as Et N⋅3HF, Pyr⋅9HF (Olah's reagent) and similar combinations belong to the most frequently used fluoride sources, whereupon the selectivity of these reagents can be very different depending of its acidity, the nucleophilicity of the fluoride equivalent, and the structure of the particular substrate. These reagents can be used safely in ordinary chemistry laboratories for nucleophilic substitution reactions by fluoride at sp -hybridized carbon centers. For ring opening reactions of epoxides, the regio- and stereoselectivity is very much depending of the nature of the epoxide and the acidity of the HF reagent favoring either S 1 or S 2 type reactions. Similarly, the outcome of halofluorination and similar reactions with sulfur or seleno electrophiles can be controlled by the particular combination of the electrophile and the fluoride source. Examples for the application of these reaction types for the synthesis of fluorine-containing analogues of natural products or biologically relevant compounds are in the focus of this personal account.
对于亲核单氟化反应,胺/氢氟酸试剂,如Et₃N·3HF、Pyr·9HF(奥拉试剂)及类似组合,属于最常用的氟源,然而这些试剂的选择性会因其酸度、氟当量的亲核性以及特定底物的结构而有很大差异。这些试剂可在普通化学实验室中安全地用于氟对sp³杂化碳中心的亲核取代反应。对于环氧化物的开环反应,区域选择性和立体选择性在很大程度上取决于环氧化物的性质以及有利于Sₙ1或Sₙ2型反应的氢氟酸试剂的酸度。同样,卤氟代反应以及与硫或硒亲电试剂的类似反应的结果可通过亲电试剂和氟源的特定组合来控制。这些反应类型在天然产物或生物相关化合物的含氟类似物合成中的应用实例是本个人综述的重点。