Ring-Expansion Reaction of Isatins with Ethyl Diazoacetate Catalyzed by Dirhodium(II)/DBU Metal-Organic System: En Route to Viridicatin Alkaloids

We present here the NHC‐dirhodium(II)/DBU‐catalyzed ring expansion reaction of isatins with ethyl diazoacetate. This new one‐pot protocol yields the ethyl 3‐hydroxy‐2(1H)‐oxoquinoline‐4‐carboxylate core, regioselectively and in good to excellent yields. A DFT mechanistic study indicates metallocarbe...

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Veröffentlicht in:European journal of organic chemistry 2013-10, Vol.2013 (28), p.6280-6290
Hauptverfasser: Paterna, Roberta, André, Vânia, Duarte, M. Teresa, Veiros, Luis F., Candeias, Nuno R., Gois, Pedro M. P.
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container_end_page 6290
container_issue 28
container_start_page 6280
container_title European journal of organic chemistry
container_volume 2013
creator Paterna, Roberta
André, Vânia
Duarte, M. Teresa
Veiros, Luis F.
Candeias, Nuno R.
Gois, Pedro M. P.
description We present here the NHC‐dirhodium(II)/DBU‐catalyzed ring expansion reaction of isatins with ethyl diazoacetate. This new one‐pot protocol yields the ethyl 3‐hydroxy‐2(1H)‐oxoquinoline‐4‐carboxylate core, regioselectively and in good to excellent yields. A DFT mechanistic study indicates metallocarbene formation between the 3‐hydroxyindole‐diazo intermediate and the dirhodium(II) complex to be the rate‐limiting step of the reaction. The synthesized ethyl 3‐hydroxy‐2(1H)‐oxoquinoline‐4‐carboxylate core could be readily converted to viridicatin alkaloids, in yields up to 80 % by a microwave‐assisted Suzuki–Miyaura cross coupling of the 3‐hydroxy‐4‐bromoquinolin‐2(1H)‐one with arylboronic acid. Herein is presented an efficient method for catalytic ring expansion of isatins with ethyl diazoacetate that selectively yields ethyl 3‐hydroxy‐2(1H)‐oxoquinoline‐4‐carboxylates; these are characterized as containing a useful core for the synthesis of viridicatin alkaloids.
doi_str_mv 10.1002/ejoc.201300796
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Chem</addtitle><date>2013-10</date><risdate>2013</risdate><volume>2013</volume><issue>28</issue><spage>6280</spage><epage>6290</epage><pages>6280-6290</pages><issn>1434-193X</issn><eissn>1099-0690</eissn><abstract>We present here the NHC‐dirhodium(II)/DBU‐catalyzed ring expansion reaction of isatins with ethyl diazoacetate. This new one‐pot protocol yields the ethyl 3‐hydroxy‐2(1H)‐oxoquinoline‐4‐carboxylate core, regioselectively and in good to excellent yields. A DFT mechanistic study indicates metallocarbene formation between the 3‐hydroxyindole‐diazo intermediate and the dirhodium(II) complex to be the rate‐limiting step of the reaction. The synthesized ethyl 3‐hydroxy‐2(1H)‐oxoquinoline‐4‐carboxylate core could be readily converted to viridicatin alkaloids, in yields up to 80 % by a microwave‐assisted Suzuki–Miyaura cross coupling of the 3‐hydroxy‐4‐bromoquinolin‐2(1H)‐one with arylboronic acid. Herein is presented an efficient method for catalytic ring expansion of isatins with ethyl diazoacetate that selectively yields ethyl 3‐hydroxy‐2(1H)‐oxoquinoline‐4‐carboxylates; these are characterized as containing a useful core for the synthesis of viridicatin alkaloids.</abstract><cop>Weinheim</cop><pub>WILEY-VCH Verlag</pub><doi>10.1002/ejoc.201300796</doi><tpages>11</tpages></addata></record>
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source Wiley Online Library Journals Frontfile Complete
subjects Alkaloids
Diazo compounds
Expansion
Rhodium
Ring-expansion
Synthetic methods
title Ring-Expansion Reaction of Isatins with Ethyl Diazoacetate Catalyzed by Dirhodium(II)/DBU Metal-Organic System: En Route to Viridicatin Alkaloids
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