Kobayashi Shū
Department of Chemistry, School of Science, The University of Tokyo, Hongo, Bunkyo-ku, Tokyo, 113-0033, Japan.
Chem Asian J. 2016 Feb 18;11(4):425-36. doi: 10.1002/asia.201500916. Epub 2015 Oct 20.
The concept of flow "fine" synthesis, that is, high yielding and selective organic synthesis by flow methods, is described. Some examples of flow "fine" synthesis of natural products and APIs are discussed. Flow methods have several advantages over batch methods in terms of environmental compatibility, efficiency, and safety. However, synthesis by flow methods is more difficult than synthesis by batch methods. Indeed, it has been considered that synthesis by flow methods can be applicable for the production of simple gasses but that it is difficult to apply to the synthesis of complex molecules such as natural products and APIs. Therefore, organic synthesis of such complex molecules has been conducted by batch methods. On the other hand, syntheses and reactions that attain high yields and high selectivities by flow methods are increasingly reported. Flow methods are leading candidates for the next generation of manufacturing methods that can mitigate environmental concerns toward sustainable society.
本文描述了流动“精细”合成的概念,即通过流动方法进行的高产率和高选择性有机合成。讨论了天然产物和活性药物成分(API)的流动“精细”合成的一些实例。在环境兼容性、效率和安全性方面,流动方法相对于间歇方法具有若干优势。然而,流动方法合成比间歇方法合成更困难。事实上,人们一直认为流动方法合成适用于简单气体的生产,但难以应用于天然产物和API等复杂分子的合成。因此,此类复杂分子的有机合成一直通过间歇方法进行。另一方面,越来越多的报道称通过流动方法可实现高产率和高选择性的合成及反应。流动方法是下一代制造方法的主要候选者,有望缓解对可持续社会的环境担忧。