Kumar Tarun, Ben Hassine Amira, Martinez Agathe, Harakat Dominique, Chevreux Sylviane, Massicot Fabien, Taillefer Marc, Behr Jean-Bernard, Vasse Jean-Luc, Jaroschik Florian
Institut de Chimie Moléculaire de Reims UMR 7312, Université de Reims Champagne Ardenne; Institut Charles Gerhardt Montpellier UMR 5253, Ecole Nationale Supérieure de Chimie de Montpellier.
Institut de Chimie Moléculaire de Reims UMR 7312, Université de Reims Champagne Ardenne.
J Vis Exp. 2018 Jul 28(137):57948. doi: 10.3791/57948.
The selective activation of one carbon-fluorine bond in polyfluorinated aromatic molecules or in trifluoromethyl-containing substrates offers the possibility of accessing unique fluorine-containing molecules, which are difficult to obtain by other synthetic pathways. Among various metals, which can undergo C-F activation, lanthanides (Ln) are good candidates as they form strong Ln-F bonds. Lanthanide metals are strong reducing agents with a redox potential Ln/Ln of approximately -2.3 V, which is comparable to the value of the Mg/Mg redox couple. In addition, lanthanide metals display a promising functional group tolerance and their reactivity can vary along the lanthanide series, making them suitable reagents for fine-tuning reaction conditions in organic and organometallic transformations. However, due to their oxophilicity, lanthanides react readily with oxygen and water and therefore require special conditions for storage, handling, preparation, and activation. These factors have limited a more widespread use in organic synthesis. We herein present how dysprosium metal - and by analogy all lanthanide metals - can be freshly prepared under anhydrous conditions using glovebox and Schlenk techniques. The freshly filed metal, in combination with aluminum chloride, initiates the selective C-F activation in trifluoromethylated benzofulvenes. The resulting reaction intermediates react with nitroalkenes to obtain a new family of difluoroalkenes.
在多氟芳烃分子或含三氟甲基的底物中选择性激活一个碳氟键,为获得独特的含氟分子提供了可能性,而这些分子通过其他合成途径很难得到。在各种能够进行碳氟活化的金属中,镧系元素(Ln)是很好的选择,因为它们能形成很强的Ln-F键。镧系金属是强还原剂,其Ln/Ln的氧化还原电位约为-2.3 V,这与Mg/Mg氧化还原电对的值相当。此外,镧系金属表现出良好的官能团耐受性,并且它们的反应活性会随着镧系元素系列而变化,这使得它们成为有机和有机金属转化中微调反应条件的合适试剂。然而,由于镧系元素的亲氧性,它们很容易与氧气和水反应,因此在储存、处理、制备和活化方面需要特殊条件。这些因素限制了它们在有机合成中的更广泛应用。我们在此展示了如何使用手套箱和施伦克技术在无水条件下新鲜制备镝金属——类推所有镧系金属也是如此。新鲜研磨的金属与氯化铝结合,引发三氟甲基化苯并富烯中的选择性碳氟活化。生成的反应中间体与硝基烯烃反应,得到一类新型的二氟烯烃。