A Microwave‐Based Chemical Factory in the Lab: From Milligram to Multigram Preparations
Laura Rinaldi, Diego Carnaroglio, Laura Rotolo, Giancarlo Cravotto
Abstract
Open-access reader
Laura Rinaldi, Diego Carnaroglio, Laura Rotolo, Giancarlo Cravotto
Abstract
Open-access reader
Microwave technology is changing the way we design and optimize synthetic protocols and their scaling up to multigram production levels. The latest generation of dedicated microwave reactors enables operators to quickly screen reaction conditions by means of parallel tests and select the best catalyst, solvent, and conditions. Pilot scale synthetic procedures require flow‐through conditions in microwave flow reactors which can be obtained by adapting classic batch protocols. Microwave‐assisted chemical processes play a pivotal role in the design of sustainable multigram preparations which address the double requirement of process intensification and competitive production costs. Although most researchers are likely to be acquainted with the great potential of dielectric heating, the advantages and disadvantages of a particular device or the conditions needed to maximize efficiency and functionality are often overlooked. The double aims of the present review are to provide a panoramic snapshot of commercially available lab microwave reactors and their features as well as highlighting a few selected applications of microwave chemistry of particular relevance.
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Microwave technology is changing the way we design and optimize synthetic protocols and their scaling up to multigram production levels. The latest generation of dedicated microwave reactors enables operators to quickly screen reaction conditions by means of parallel tests and select the best catalyst, solvent, and conditions. Pilot scale synthetic procedures require flow‐through conditions in microwave flow reactors which can be obtained by adapting classic batch protocols. Microwave‐assisted chemical processes play a pivotal role in the design of sustainable multigram preparations which address the double requirement of process intensification and competitive production costs. Although most researchers are likely to be acquainted with the great potential of dielectric heating, the advantages and disadvantages of a particular device or the conditions needed to maximize efficiency and functionality are often overlooked. The double aims of the present review are to provide a panoramic snapshot of commercially available lab microwave reactors and their features as well as highlighting a few selected applications of microwave chemistry of particular relevance.
Key concepts: Process engineering, Chemistry, Microwave, Flow chemistry, Biochemical engineering, Microwave chemistry, Nanotechnology, Catalysis