Dotson Jordan J, Garg Neil K, Garcia-Garibay Miguel A
University of California, Los Angeles, Department of Chemistry and Biochemistry, Los Angeles, CA, 90095, USA.
Tetrahedron. 2020 Dec;76(51). doi: 10.1016/j.tet.2020.131181. Epub 2020 Apr 10.
We report synthetic efforts toward the regiocontrolled installation of the prenyl moiety in debromoflustramine A by the regiospecific photodecarbonylation of a prenyl-substituted ketone. Synthetic approaches to access the plausible photodecarbonylation substrates beginning from tryptamine were evaluated. Initial attempts to synthesize a suitable substrate for photodecarbonylation were hampered by a lack of substrate crystallinity (a prerequisite for solid-state photochemistry). Ultimately, a crystalline substrate could be accessed to attempt the key step by judicious selection of -substituents. Although the photodecarbonylation did not result in the desired reverse prenylation, this study highlights the troubleshooting and optimization required for crystal phase photochemistry and underscores methods that can be used to control substrate crystallinity.
我们报道了通过异戊烯基取代酮的区域特异性光脱羰反应,在去溴弗斯特拉明A中区域控制安装异戊烯基部分的合成工作。评估了从色胺开始获得可能的光脱羰反应底物的合成方法。最初尝试合成适合光脱羰反应的底物时,因缺乏底物结晶性(固态光化学的一个先决条件)而受阻。最终,通过明智地选择取代基,可以获得一种结晶底物来尝试关键步骤。尽管光脱羰反应没有产生所需的反向异戊烯基化,但这项研究突出了晶相光化学所需的故障排除和优化,并强调了可用于控制底物结晶性的方法。