Fr. 189.00

Heterocycles from Transition Metal Catalysis - Formation and Functionalization

Anglais · Livre de poche

Expédition généralement dans un délai de 6 à 7 semaines

Description

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"Heterocycles from Transition Metal Catalysis: Formation and Functionalization" provides a concise summary of the prominent role of late transition metal (palladium, nickel, copper) catalysed processes in the synthesis and functionalization of heterocyclic systems. It gives an introduction to catalytic transformations, an overview of the most important reaction types, and presents synthetically useful catalytic processes classified by the target system and the type of transformation.
The book provides a representative selection of transition metal catalysed reactions transformations that are relevant in heterocyclic chemistry. In this way, the authors present a useful resource for members of the academic community looking for a textbook as well as industrial chemists in search of a reference book. This book will be an invaluable resource for synthetic chemists, medicinal chemists, and those more generally interested in applied catalysis.

Table des matières

Foreword.- Abbreviations - Background: Introduction to catalysis.- General.- Considerations.- The elementary steps of catalytic reactions.- Classification of the catalytic processes on the basis of the electronic character of the reagents.- References.- Overview of common carbon-carbon and carbon-heteroatom bond forming reactions: Cross-coupling reactions.- Heck reaction.- Buchwald-Hartwig reaction.- Reactions proceeding with Co insertion.- Copper catalyzed processes.- References.- Late transition metal catalysis in the synthesis of heterocycles: the synthesis of five membered rings.- Introduction to catalysis: Transmetalation route.- Insertion route.- Carbon-heteroatom bond formation.- Other processes.- References.- The synthesis of six membered rings: Transmetalation route.- Insertion route.- Carbon-heteroatom bond formation.- Other processes.- References.- The synthesis of other ring systems.- Transmetalation route.- Insertion route.- Carbon-heteroatom bond formation.- Other processes.- References.- Late transition metal catalysis in the functionalization of heterocycles: The functionalization of five membered rings: Transmetalation route.- Insertion route.- Carbon-heteroatom bond formation.- Other processes.- References.- The functionalization of six membered rings.- Transmetalation route.- Insertion route.- Carbon-heteroatom bond formation.- Other processes.- References.- The functionalization of other ring systems: Transmetalation route.- Insertion route.- Carbon-heteroatom bond formation.- Other processes.- References.- Introduction to catalysis.- Subject index.

Résumé

"Heterocycles from Transition Metal Catalysis: Formation and Functionalization" provides a concise summary of the prominent role of late transition metal (palladium, nickel, copper) catalysed processes in the synthesis and functionalization of heterocyclic systems. It gives an introduction to catalytic transformations, an overview of the most important reaction types, and presents synthetically useful catalytic processes classified by the target system and the type of transformation.
The book provides a representative selection of transition metal catalysed reactions transformations that are relevant in heterocyclic chemistry. In this way, the authors present a useful resource for members of the academic community looking for a textbook as well as industrial chemists in search of a reference book. This book will be an invaluable resource for synthetic chemists, medicinal chemists, and those more generally interested in applied catalysis.

Détails du produit

Auteurs Andrá Kotschy, András Kotschy, Géza Timári
Edition Springer Netherlands
 
Langues Anglais
Format d'édition Livre de poche
Sortie 20.10.2010
 
EAN 9789048169122
ISBN 978-90-481-6912-2
Pages 200
Poids 382 g
Illustrations XII, 200 p.
Thèmes Catalysis by Metal Complexes
Catalysis by Metal Complexes
Catégories Sciences naturelles, médecine, informatique, technique > Chimie > Chimie physique

Nickel, B, Palladium, Catalysis, HETEROCYCLIC CHEMISTRY, Chemistry and Materials Science

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