微型反应器
化学
流动化学
工艺工程
连续流动
自动化
纳米技术
过程(计算)
生化工程
化学过程
连续反应器
吞吐量
计算机科学
催化作用
工程类
机械工程
有机化学
材料科学
电信
操作系统
无线
作者
Andreas Kirschning,Gerhard Jas
出处
期刊:Topics in current chemistry
日期:2004-10-04
卷期号:: 209-239
被引量:69
摘要
As part of the dramatic changes associated with automation in pharmaceutical and agrochemical research laboratories, the search for new technologies has become a major topic in the chemical community. Commonly, high-throughput chemistry is still carried out in batches whereas flow-through processes are rather restricted to production processes, despite the fact that the latter concept allows facile automation, reproducibility, safety, and process reliability. Indeed, methods and technologies are missing that allow rapid transfer from the research level to process development. Continuous flow processes are considered as a universal lever to overcome these restrictions and only recently, joint efforts between synthetic and polymer chemists and chemical engineers have resulted in the first continuous flow devices and microreactors which allow rapid preparation of compounds with minimum workup. Importantly, more and more developments combine the use of immobilized reagents and catalysts with the concept of structured continuous flow reactors. Consequently, the present article focuses on this new research field, which is located at the interface of continuous flow processes and solid-phase-bound catalysts.
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