流动化学
批处理
工艺工程
连续反应器
放大
比例(比率)
过程(计算)
工艺优化
过程开发
连续流动
化学
连续生产
流量(数学)
计算机科学
间歇式反应器
质量流
材料科学
开发(拓扑)
在制品
连续搅拌釜式反应器
化学工程
体积流量
绿色化学
工艺设计
作者
Jayden Price,Mathew VanZant,Jordan Stevenson,Marcus B. Kindervater,Barbora Balónová,Abby‐Jo Payne,Paul Bichler,Laila Kott,Jean-Francois Vincent-Rocan
标识
DOI:10.1021/acs.oprd.5c00262
摘要
Ezogabine, a positive allosteric modulator of KCNQ2–5 used to treat epilepsy, was synthesized by a continuous flow hydrogenation process optimized to reduce the overall process and manufacturing mass intensity (PMI/MMI) of the corresponding batch scale procedure. The long reaction time observed in batch mode was streamlined via application of flow chemistry to less than 2 s in 2-MeTHF using Raney-Ni in a Phoenix Flow Reactor system. The continuous flow hydrogenation afforded ezogabine with 99.5% purity by HPLC with significantly reduced PMI (26) and equipment turnover time, thus providing the opportunity for substantial cost reductions relative to batch processing and greater alignment with green chemistry principles.
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