Department of Synthetic and Biological Chemistry, Graduate School of Engineering, Kyoto University, Kyoto 615-8510, Japan.
Nat Commun. 2011;2:264. doi: 10.1038/ncomms1264.
Protecting-group-free synthesis has received significant recent research interest in the context of ideal synthesis and green sustainable chemistry. In general, organolithium species react with ketones very rapidly, and therefore ketone carbonyl groups should be protected before an organolithium reaction, if they are not involved in the desired transformation. If organolithium chemistry could be free from such a limitation, its power would be greatly enhanced. Here we show that a flow microreactor enables such protecting-group-free organolithium reactions by greatly reducing the residence time (0.003 s or less). Aryllithium species bearing ketone carbonyl groups are generated by iodine-lithium exchange reactions of the corresponding aryl iodides with mesityllithium and are reacted with various electrophiles using a flow-microreactor system. The present method has been successfully applied to the formal synthesis of Pauciflorol F.
无保护基合成在理想合成和绿色可持续化学的背景下受到了近期的广泛关注。一般来说,有机锂试剂与酮类化合物反应非常迅速,因此,如果酮羰基不参与所需的转化,那么在进行有机锂反应之前,应该对其进行保护。如果有机锂化学能够摆脱这种限制,其功能将会大大增强。在这里,我们展示了一种通过微流反应器技术可以实现这种无保护基的有机锂反应,因为它可以大大减少停留时间(0.003 秒或更短)。芳基锂试剂是通过相应的芳基碘化物与均三甲基金属锂在碘-锂交换反应中生成的,并用微流反应器系统与各种亲电试剂进行反应。该方法已成功应用于 Pauciflorol F 的形式合成。