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Development of an Intermittent-Flow Enantioselective Aza-Henry Reaction Using an Arylnitromethane and Homogeneous Brønsted Acid–Base Catalyst with Recycle

机译:使用芳基硝基甲烷和均相布朗斯台德酸碱催化剂进行循环间歇流对映选择性氮杂-亨利反应的开发

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摘要

A stereoselective aza-Henry reaction between an arylnitromethane and Boc-protected aryl aldimine using a homogeneous Brønsted acid–base catalyst was translated from batch format to an automated intermittent-flow process. This work demonstrates the advantages of a novel intermittent-flow setup with product crystallization and slow reagent addition which is not amenable to the standard continuous equipment: plug flow tube reactor (PFR) or continuous stirred tank reactor (CSTR). A significant benefit of this strategy was the integration of an organocatalytic enantioselective reaction with straightforward product separation, including recycle of the catalyst, resulting in increased intensity of the process by maintaining high catalyst concentration in the reactor. A continuous campaign confirmed that these conditions could effectively provide high throughput of material using an automated system while maintaining high selectivity, thereby addressing nitroalkane safety and minimizing catalyst usage.
机译:使用均相的布朗斯台德酸碱催化剂,使芳基硝基甲烷与Boc保护的芳基亚胺之间的立体选择性aza-Henry反应从批处理形式转换为自动间歇流动过程。这项工作证明了具有产品结晶和试剂缓慢添加的新型间歇流动装置的优点,这不适用于标准连续设备:活塞流管反应器(PFR)或连续搅拌釜反应器(CSTR)。该策略的显着优点是有机催化对映选择性反应与直接的产物分离(包括催化剂的循环)相结合,通过保持反应器中的高催化剂浓度而提高了工艺强度。连续的活动证实了这些条件可以使用自动化系统有效地提供高产量的材料,同时保持高选择性,从而解决硝基烷的安全性并最大程度地减少催化剂的使用。

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