Flow Chemistry - A Key Enabling Technology for (Multistep) Organic Synthesis

被引:526
|
作者
Wegner, Jens [1 ,2 ]
Ceylan, Sascha [1 ,2 ]
Kirschning, Andreas [1 ,2 ]
机构
[1] Leibniz Univ Hannover, Inst Organ Chem, D-30167 Hannover, Germany
[2] Leibniz Univ Hannover, Biomol Wirkstoffzentrum BMWZ, D-30167 Hannover, Germany
关键词
enabling technologies; inductive heating; micro reactors; microwaves; multicomponent reactions; photochemistry; DRY-MEDIA REACTOR; PROCESS INTENSIFICATION; IONIC LIQUIDS; MICROREACTOR TECHNOLOGY; ENCAPSULATED PALLADIUM; MICROWAVE REACTOR; SYNTHESIS MACOS; SINGLET OXYGEN; THIN-FILMS; WORK-UP;
D O I
10.1002/adsc.201100584
中图分类号
O69 [应用化学];
学科分类号
081704 ;
摘要
Laboratory scaled flow-through processes have seen an explosive development over the past decade and have become an enabling technology for improving synthetic efficiency through automation and process optimization. Practically, flow devices are a crucial link between bench chemists and process engineers. The present review focuses on two unique aspects of modern flow chemistry where substantial advantages over the corresponding batch processes have become evident. Flow chemistry being one out of several enabling technologies can ideally be combined with other enabling technologies such as energy input. This may be achieved in form of heat to create supercritical conditions. Here, indirect methods such as microwave irradiation and inductive heating have seen widespread applications. Also radiation can efficiently be used to carry out photochemical reactions in a highly practical and scalable manner. A second unique aspect of flow chemistry compared to batch chemistry is associated with the option to carry out multistep synthesis by designing a flow set-up composed of several flow reactors. Besides their role as chemical reactors these can act as elements for purification or solvent switch.
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页码:17 / 57
页数:41
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