Continuous-Flow Processes for the Production of Floxacin Intermediates: Efficient C–C Bond Formation through a Rapid and Strong Activation of Carboxylic Acids

Shaozheng Guo, Zhiqun Yu, W. Su
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Abstract

Abstract The development of highly efficient C–C bond formation methods for the synthesis of ethyl 2-(2,4-dichloro-5-fluorobenzoyl)-3-(dimethylamino)acrylate 1 in continuous flow processes has been described, which is based on the concept of rapid and efficient activation of carboxylic acid. 2,4-Dichloro-5-fluorobenzoic acid is rapidly converted into highly reactive 2,4-dichloro-5-fluorobenzoyl chloride by treating with inexpensive and less-toxic solid bis(trichloromethyl)carbonate. And then it rapidly reacts with ethyl 3-(dimethylamino)acrylate to afford the desired 1. This process can be performed under mild conditions. Compared with the traditional tank reactor process, less raw material consumption, higher product yield, less reaction time, higher operation safety ensured by more the environmentally friendly procedure, and process continuity are achieved in the continuous-flow system.
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生产氟沙星中间体的连续流工艺:通过羧酸的快速和强活化有效地形成C-C键
摘要基于羧酸快速高效活化的概念,研究了连续流法合成2-(2,4-二氯-5-氟苯甲酰基)-3-(二甲氨基)丙烯酸酯1的高效C-C成键方法。2,4-二氯-5-氟苯甲酸通过廉价和毒性较低的固体二(三氯甲基)碳酸处理,可迅速转化为高活性的2,4-二氯-5-氟苯甲酰氯。然后与3-(二甲氨基)丙烯酸乙酯迅速反应生成所需的1。这个过程可以在温和的条件下进行。与传统的罐式反应器工艺相比,在连续流系统中,原料消耗更少,产品收率更高,反应时间更短,操作安全性更高,工艺更环保,实现了工艺的连续性。
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审稿时长
15 weeks
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