Yusuke Ohta Ohta Copper-Catalyzed Multi-Component Reactions

Copper-Catalyzed Multi-Component Reactions

von Yusuke Ohta

Synthesis of Nitrogen-Containing Polycyclic Compounds

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Beschreibung

A copper-catalyzed direct synthesis of 2-(aminomethyl)indoles by catalytic domino reaction including multi-component coupling was developed, and is the first example of a three-component indole formation without producing salts as a byproduct. Based on this reaction, a copper-catalyzed synthesis of 3-(aminomethyl)isoquinoline was accomplished which represents an unprecedented isoquinoline synthesis through a four-component coupling reaction. Following these results, extensive application studies using one-pot palladium-, acid-, or base-promoted cyclization revealed that indole- or isoquinoline-fused polycyclic compounds can be readily synthesized through multi-component reactions. As the concept of Green Chemistry becomes ever more important, these findings may provide efficient and atom-economical approaches to the diversity-oriented synthesis of bioactive compounds containing a complex structure. This could lead to development of promising drug leads with structural complexity. The work of this thesis will go on to inspire the synthetic research of many readers.
A copper-catalyzed direct synthesis of 2-(aminomethyl)indoles by catalytic domino reaction including multi-component coupling was developed, and is the first example of a three-component indole formation without producing salts as a byproduct. Based on this reaction, a copper-catalyzed synthesis of 3-(aminomethyl)isoquinoline was accomplished which represents an unprecedented isoquinoline synthesis through a four-component coupling reaction. Following these results, extensive application studies using one-pot palladium-, acid-, or base-promoted cyclization revealed that indole- or isoquinoline-fused polycyclic compounds can be readily synthesized through multi-component reactions. As the concept of Green Chemistry becomes ever more important, these findings may provide efficient and atom-economical approaches to the diversity-oriented synthesis of bioactive compounds containing a complex structure. This could lead to development of promising drug leads with structural complexity. The work of this thesis will go on to inspire the synthetic research of many readers.
Nominated by the University of Kyoto (Pharmaceutical Sciences), Japan for a Springer The work of the thesis will inspire synthetic research of many readers. This research is the first example of a three-component Indole formation without producing salts as a byproduct. Includes supplementary material: sn.pub/extras

Autor*in

Yusuke Ohta

Themen in »Copper-Catalyzed Multi-Component Reactions«

atom economy bioactive compounds complex heterocyclic structures copper salt green chemistry indole derivatives isoquinoline derivatives multi-component reaction multicomponent coupling one-pot reaction

Stimmen zu »Copper-Catalyzed Multi-Component Reactions«

Details

ISBN: 9783642267017
Verlag: Springer Berlin
Erscheinung: 25.02.2013

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