化学
酰化
组合化学
乙腈
流动化学
批处理
硫酸
二苯并噻吩
有机化学
间歇式反应器
卤化
美金刚
过程(计算)
反应条件
级联反应
精细化工
盐酸盐
原子经济
作者
Dharma Jagannadha Rao Velaga,Sri Charan Pinnoju,Amarendhar Manda,Shravan Kumar Komati,Naga Lakshmi Ramana Susarla,Srividya Ramakrishnan,Suhas Jawlekar,Rajesh K. Arigela,Gopal Chandru Senadi,Arthanareeswari Maruthapillai,Rakeshwar Bandichhor
标识
DOI:10.1021/acs.oprd.5c00509
摘要
A cost-effective, atom-efficient synthetic route to memantine hydrochloride was developed by replacing the traditional bromination-formylation sequence with an acylation strategy. Conventional bromination of 1,3-dimethyladamantane (1,3-DMA) is corrosive, expensive, and difficult to scale up, prompting the development of a new process in which 1,3-DMA reacts with sulfuric acid and acetonitrile to form the N-acetyl memantine intermediate. Although batch acylation is highly exothermic, a novel flow-batch hybrid method enables safe thermal management by conducting the reaction in a flow reactor at 40 °C, followed by a brief batch hold to provide additional residence time. The intermediate is subsequently isolated in a flow-batch hybrid mode, yielding >99% purity and 90% yield. This is the first reported flow-batch hybrid synthesis of N-acetyl memantine, reducing the reaction exothermicity to manageable levels, improving safety, and enabling industrially viable throughput. The process significantly lowers production costs and enhances atom efficiency, offering a scalable, sustainable route to memantine hydrochloride.
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