Noda Hidetoshi, Amemiya Fuyuki, Weidner Karin, Kumagai Naoya, Shibasaki Masakatsu
Institute of Microbial Chemistry (BIKAKEN) , 3-14-23 Kamiosaki, Shinagawa-ku , Tokyo 141-0021 , Japan . Email:
Chem Sci. 2017 Apr 1;8(4):3260-3269. doi: 10.1039/c7sc00330g. Epub 2017 Mar 2.
Organofluorine compounds are found in several important classes of chemicals, such as pharmaceuticals, agrochemicals, and functional materials. Chemists have been immensely interested in the development of methodologies for expeditious access to fluorine containing building blocks. In this study, we report a new method for the catalytic asymmetric synthesis of CF-substituted tertiary propargylic alcohols with two contiguous stereogenic centers the direct aldol reaction of an α-N amide to trifluoromethyl ketones. The key to the success of this method is the identification of a catalyst comprising Cu(ii)/chiral hydroxamic acid to promote the desired aldol reaction, constructing a tetrasubstituted carbon in a highly stereoselective fashion. Despite substantial prior advances in asymmetric catalysis, this class of catalysts has not been utilized for the formation of carbon-carbon bond-forming reactions. Our mechanistic study sheds light on the unique profile of this catalytic system, where the Cu(ii) complex plays a bifunctional role of serving as a Lewis acid and a Brønsted base. Furthermore, the densely functionalized aldol adducts undergo chemoselective transformations, affording a series of fluorine containing chiral building blocks with widespread application.
有机氟化合物存在于几类重要的化学品中,如药物、农用化学品和功能材料。化学家们对开发快速获取含氟结构单元的方法非常感兴趣。在本研究中,我们报道了一种催化不对称合成具有两个相邻手性中心的CF-取代叔炔丙醇的新方法——α-N酰胺与三氟甲基酮的直接羟醛反应。该方法成功的关键是鉴定出一种由Cu(ii)/手性异羟肟酸组成的催化剂,以促进所需的羟醛反应,以高度立体选择性的方式构建一个四取代碳。尽管在不对称催化方面此前有了很大进展,但这类催化剂尚未用于形成碳-碳键的反应。我们的机理研究揭示了该催化体系的独特特征,其中Cu(ii)配合物起到了路易斯酸和布朗斯特碱的双功能作用。此外,高度官能团化的羟醛加合物发生化学选择性转化,得到一系列具有广泛应用的含氟手性结构单元。