Tanaka Kenta, Kishimoto Mami, Asada Yosuke, Tanaka Yuta, Hoshino Yujiro, Honda Kiyoshi
Graduate School of Environment and Information Sciences , Yokohama National University , Tokiwadai, Hodogaya-ku, Yokohama 240-8501 , Japan.
J Org Chem. 2019 Nov 1;84(21):13858-13870. doi: 10.1021/acs.joc.9b02036. Epub 2019 Oct 15.
We report the one-pot synthesis of 2,2-disubstituted chromanes with electron-withdrawing substituents. This reaction provides a simple yet efficient route to a wide range of electron-deficient chromanes in high yield and excellent regioselectivity. The reaction of salicylaldehyde with 1,1-disubstituted ethylenes smoothly furnishes these electron-deficient chromanes, which can be further transformed into functionalized chromanes or chromene. For example, was effectively synthesized from 5-chlorosalicylaldehyde with 4-chlorostyrene in two steps in excellent yield. The present reaction thus provides versatile access to functionalized electron-deficient chromanes and chromenes and therefore constitutes a promising tool for the synthesis of biologically and photochemically active molecules.
我们报道了具有吸电子取代基的2,2-二取代色满的一锅法合成。该反应为高产率和优异区域选择性地制备多种缺电子色满提供了一条简单而有效的途径。水杨醛与1,1-二取代乙烯的反应顺利地生成了这些缺电子色满,它们可进一步转化为功能化色满或色烯。例如,由5-氯水杨醛与4-氯苯乙烯经两步反应以优异产率有效地合成了[具体产物未给出]。因此,本反应为功能化缺电子色满和色烯提供了多种合成途径,从而构成了合成生物活性和光化学活性分子的一种有前景的工具。