Development of a highly efficient single-mode microwave applicator with a resonant cavity and its application to continuous flow syntheses

Microwave-assisted organic synthesis has many advantages and is widely applied to a variety of reactions. We have developed a new single-mode microwave applicator, specific to continuous flow synthesis, whose main feature is that it generates a uniform electromagnetic field inside its resonant cavit...

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Veröffentlicht in:RSC advances 2015, Vol.5 (14), p.10204-10210
Hauptverfasser: Yokozawa, Saori, Ohneda, Noriyuki, Muramatsu, Ken, Okamoto, Tadashi, Odajima, Hiromichi, Ikawa, Takashi, Sugiyama, Jun-ichi, Fujita, Masashi, Sawairi, Taira, Egami, Hiromichi, Hamashima, Yoshitaka, Egi, Masahiro, Akai, Shuji
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Sprache:eng
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Zusammenfassung:Microwave-assisted organic synthesis has many advantages and is widely applied to a variety of reactions. We have developed a new single-mode microwave applicator, specific to continuous flow synthesis, whose main feature is that it generates a uniform electromagnetic field inside its resonant cavity. Two well-known reactions, the Fischer indole synthesis and the Diels–Alder reaction, proceeded very quickly when a solution of substrates was pumped through a helical glass tube reactor inside the resonant cavity, under a pressure of 2.5 MPa. The desired products were obtained in high yields. This compact apparatus constitutes a new method for switching organic synthesis from batch to continuous flow, and enables continuous synthesis of products at a scale of 100 g h −1 or more.
ISSN:2046-2069
2046-2069
DOI:10.1039/C4RA12428F