2018
DOI: 10.1021/acscatal.8b01697
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Recent Advances in C–H Functionalization Using Electrochemical Transition Metal Catalysis

Abstract: Electrochemical transition metal catalysis is a powerful strategy for organic synthesis because it obviates the use of stoichiometric chemical oxidants and reductants. C–H bond functionalization offers a variety of useful conversions of simple and ubiquitous organic molecules into diverse functional groups in a single synthetic operation. This review summarizes recent progress in merging electrochemistry with transition metal-catalyzed C–H functionalization, specifically C–C, C–X (halogen), C–O, C–P, and C–N b… Show more

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Cited by 484 publications
(171 citation statements)
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“…[7] Thee lectricity-powered dehydrogenative cross-coupling reactions proceed with H 2 evolution, obviating the need for oxidizing reagents and proton acceptors. [8] In this context, intermolecular dehydrogenative cross-coupling of electron-rich arenes with thiophenols have been reported. [9] In addition, we and others have reported electrochemical intramolecular dehydrogenative C À Sbond-formation reactions for the synthesis of benzothia-zoles.…”
mentioning
confidence: 92%
“…[7] Thee lectricity-powered dehydrogenative cross-coupling reactions proceed with H 2 evolution, obviating the need for oxidizing reagents and proton acceptors. [8] In this context, intermolecular dehydrogenative cross-coupling of electron-rich arenes with thiophenols have been reported. [9] In addition, we and others have reported electrochemical intramolecular dehydrogenative C À Sbond-formation reactions for the synthesis of benzothia-zoles.…”
mentioning
confidence: 92%
“…Early studies on this topic, including examples involving transition‐metal‐catalyzed electrochemical transformations, such as the oxygenation of C−H bonds, have been summarized in other reviews and are not included herein. We only focus on recent advances.…”
Section: Ester C−o Bond Formation Through Electrolysis Of Carboxylic mentioning
confidence: 99%
“…Die Entwicklung neuer katalytischer Systeme wird natürlich ebenfalls im Mittelpunkt zukünftiger Entwicklungen stehen, denn eine dirigierende Gruppe ohne ein effizientes Katalysesystem ist relativ nutzlos.I nd iesem Zusammenhang kçnnte elektrochemische Aktivierung ebenfalls die Entwicklung effizienter, innovativer und nachhaltiger Prozesse ermçglichen. [222] Die Murai-Reaktion feiert mittlerweile ihren 25. Geburtstag.Bei Betrachtung aller in diesem Aufsatz erçrterten, späteren Fortschritte ist festzuhalten, dass sich dirigierte Alkylierungen von C-H-Bindungen von Arenen erheblich weiterentwickelt haben und kein Zweifel daran besteht, dass sie dies auch weiterhin tun werden.…”
Section: Zusammenfassung Und Ausblickunclassified