Department of Chemistry, Boston University, 590 Commonwealth Ave. Boston, MA 02215 (USA).
Angew Chem Int Ed Engl. 2015 Sep 21;54(39):11521-5. doi: 10.1002/anie.201504454. Epub 2015 Jul 1.
Cyclobutanes derived from the dimerization of cinnamic acids are the core scaffolds of many molecules with potentially interesting biological activities. By utilizing a powerful flow photochemistry platform developed in our laboratory, we have evaluated the effects of flow on the dimerization of a range of cinnamate substrates. During the course of the study we also identified a bis(thiourea) catalyst that facilitates better reactivity and moderate diastereoselectivity in the reaction. Overall, we show that carrying out the reaction in flow in the presence of the catalyst affords consistent formation of predictable cyclobutane diastereomers.
源于肉桂酸二聚化的环丁烷是许多具有潜在有趣生物活性的分子的核心骨架。通过利用我们实验室开发的强大的流动光化学平台,我们评估了流动对一系列肉桂酸酯底物二聚化的影响。在研究过程中,我们还确定了一种双(硫脲)催化剂,它可以提高反应的活性和中等的非对映选择性。总的来说,我们表明在催化剂存在的情况下在流动中进行反应可以一致地形成可预测的环丁烷非对映异构体。