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利用流动微反应系统生成和反应环氧乙烷锂。

Generation and reactions of oxiranyllithiums by use of a flow microreactor system.

机构信息

Department of Synthetic and Biological Chemistry, Graduate School of Engineering, Kyoto University, Nishikyo-ku, Kyoto, 615-8510 Japan.

出版信息

Chemistry. 2010 Dec 17;16(47):14149-58. doi: 10.1002/chem.201000815.

Abstract

A flow microreactor system consisting of micromixers and microtubes provides an effective reactor for the generation and reactions of aryloxiranyllithiums without decomposition by virtue of short residence time and efficient temperature control. The deprotonation of styrene oxides with sBuLi can be conducted by using the flow microreactor system at -78 or -68 °C (whereas much lower temperatures (< -100 °C) are needed for the same reactions conducted under macrobatch conditions). The resulting α-aryloxiranyllithiums were allowed to react with electrophiles in the flow microreactor system at the same temperature. The sequential introduction of various electrophiles onto 2,3-diphenyloxiranes was also achieved by using an integrated flow microreactor, which serves as a powerful system for the stereoselective synthesis of tetrasubstituted epoxides.

摘要

由微混合器和微管组成的流动微反应器系统为芳氧环烷基锂的生成和反应提供了一个有效的反应器,由于停留时间短和高效的温度控制,芳氧环烷基锂不会分解。通过使用流动微反应器系统,在 -78 或 -68°C 下可以进行苯乙烯氧化物与 sBuLi 的去质子化反应(而在同样的反应在宏观批次条件下进行时,需要更低的温度(< -100°C))。所得的α-芳氧环烷基锂在相同温度下在流动微反应器系统中与亲电试剂反应。通过使用集成的流动微反应器,也可以实现各种亲电试剂对 2,3-二苯氧环烷的顺序引入,这是一个用于立体选择性合成四取代环氧化物的强大系统。

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