期刊
CHEMISTRY-A EUROPEAN JOURNAL
卷 17, 期 43, 页码 11956-11968出版社
WILEY-V C H VERLAG GMBH
DOI: 10.1002/chem.201102065
关键词
flow chemistry; high-temperature chemistry; microreactors; microwave chemistry; process intensification; synthetic methods
资金
- Christian Doppler Research Society (CDG)
The popularity of dedicated microwave reactors in many academic and industrial laboratories has produced a plethora of synthetic protocols that are based on this enabling technology. In the majority of examples, transformations that require several hours when performed using conventional heating under reflux conditions reach completion in a few minutes or even seconds in sealed-vessel, autoclave-type, microwave reactors. However, one severe drawback of microwave chemistry is the difficulty in scaling this technology to a production-scale level. This Concept article demonstrates that this limitation can be overcome by translating batch microwave chemistry to scalable continuous-flow processes. For this purpose, conventionally heated micro- or mesofluidic flow devices fitted with a back-pressure regulator are employed, in which the high temperatures and pressures attainable in a sealed-vessel microwave chemistry batch experiment can be mimicked.
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