Department of Applied Chemistry, Kyung Hee University, Gyeonggi 17104, Korea.
Department of Chemistry and Chemical Engineering, Inha University, Incheon 402-751, Korea.
Molecules. 2020 Feb 7;25(3):721. doi: 10.3390/molecules25030721.
We review recent works for nucleophilic fluorination of organic compounds in which the Coulombic interactions between ionic species and/or hydrogen bonding affect the outcome of the reaction. S2 fluorination of aliphatic compounds promoted by ionic liquids is first discussed, focusing on the mechanistic features for reaction using alkali metal fluorides. The influence of the interplay of ionic liquid cation, anion, nucleophile and counter-cation is treated in detail. The role of ionic liquid as bifunctional (both electrophilic and nucleophilic) activator is envisaged. We also review the SAr fluorination of diaryliodonium salts from the same perspective. Nucleophilic fluorination of guanidine-containing of diaryliodonium salts, which are capable of forming hydrogen bonds with the nucleophile, is exemplified as an excellent case where ionic interactions and hydrogen bonding significantly affect the efficiency of reaction. The origin of experimental observation for the strong dependence of fluorination yields on the positions of -Boc protection is understood in terms of the location of the nucleophile with respect to the reaction center, being either close to far from it. Recent advances in the synthesis of [F]F-dopa are also cited in relation to SAr fluorination of diaryliodonium salts. Discussions are made with a focus on tailor-making promoters and solvent engineering based on ionic interactions and hydrogen bonding.
我们回顾了近期关于有机化合物亲核氟化的研究工作,其中离子物种和/或氢键之间的库仑相互作用影响反应的结果。首先讨论了离子液体促进的脂肪族化合物的 S2 氟化,重点讨论了使用碱金属氟化物进行反应的反应机理特征。详细讨论了离子液体阳离子、阴离子、亲核试剂和抗衡阳离子相互作用的影响。设想了离子液体作为双功能(亲电和亲核)活化剂的作用。我们还从相同的角度回顾了 SAr 碘代芳烃的氟化。含胍的碘代芳烃的亲核氟化是一个很好的例子,其中离子相互作用和氢键显著影响反应的效率,这些盐能够与亲核试剂形成氢键。实验观察到氟化产率强烈依赖 -Boc 保护位置的原因,可以根据亲核试剂相对于反应中心的位置(靠近或远离)来理解。还引用了最近在 [F]F-dopa 合成方面的进展,以说明碘代芳烃的 SAr 氟化。讨论的重点是基于离子相互作用和氢键的定制促进剂和溶剂工程。