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New approaches to enantioselective fluorination:Cinchona alkaloids combinations and chiral ligands/metal complexes

机译:对映选择性氟化的新方法:金鸡纳生物碱组合和手性配体/金属配合物

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摘要

The selective construction of carbon-fluorine bonds is of great interest to medicinal chemists because the replacement of a hydrogen or an oxygen atom with a fluorine atom in biologically active molecules can confer the molecules with improved physicochemical properties and biological activities.Since the first discovery of enantioselective fluorination using N-fluorocamphorsultam,our synthetic interest had been focused on the development of chiral N-fluorosulfonamide derivatives capable of enantioselective fluorination.However,these initial efforts revealed several limitations in both chemical yields and enantioselectivities of the fluorinated products.We present here the background of our personal story of the enantioselective fluorination reaction and some successful applications of the methods to the design and synthesis of biologically active products.Two novel approaches using cinchona alkaloid/Selectfluor~R combinations and chiral ligands/metal complexes have been pursued,respectively.In addition,the recent advances in this area by other groups are also described briefly.
机译:碳-氟键的选择性构建对药物化学家非常感兴趣,因为生物活性分子中的氢或氧原子被氟原子取代可以赋予分子改善的理化性质和生物活性。使用N-氟樟脑对映体进行对映选择性氟化,我们的合成兴趣集中在能够对映选择性氟化的手性N-氟磺酰胺衍生物的开发上。我们关于对映选择性氟化反应的个人故事的背景以及该方法在生物活性产物的设计和合成中的成功应用。已经探索了两种使用金鸡纳生物碱/ Selectfluor〜R组合和手性配体/金属配合物的新颖方法此外,还简要介绍了其他团体在该领域的最新进展。

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