Organic Synthesis Using Transition Metals. 2e
Autor R Batesen Limba Engleză Hardback – 12 apr 2012
Organic Synthesis Using Transition Metals, 2nd Edition considers the ways in which transition metals, as catalysts and reagents, can be used in organic synthesis, both for pharmaceutical compounds and for natural products. It concentrates on the bond-forming reactions that set transition metal chemistry apart from "classical" organic chemistry. Each chapter is extensively referenced and provides a convenient point of entry to the research literature. Topics covered include:
- introduction to transition metals in organic synthesis
- coupling reactions
- C-H activation
- carbonylative coupling reactions
- alkene and alkyne insertion reactions
- electrophilic alkene and alkyne complexes
- reactions of alkyne complexes
- carbene complexes
- h3- or p-allyl -allyl complexes
- diene, dienyl and arene complexes
- cycloaddition and cycloisomerisation reactions
Organic Synthesis Using Transition Metals, 2nd Edition will find a place on the bookshelves of advanced undergraduates and postgraduates working in organic synthesis, catalysis, medicinal chemistry and drug discovery. It is also useful for practising researchers who want to refresh and enhance their knowledge of the field.
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Specificații
ISBN-13: 9781119978947
ISBN-10: 1119978947
Pagini: 462
Dimensiuni: 195 x 252 x 28 mm
Greutate: 0.95 kg
Ediția:2nd Edition
Editura: Wiley
Locul publicării:Chichester, United Kingdom
ISBN-10: 1119978947
Pagini: 462
Dimensiuni: 195 x 252 x 28 mm
Greutate: 0.95 kg
Ediția:2nd Edition
Editura: Wiley
Locul publicării:Chichester, United Kingdom
Public țintă
Advanced undergraduates and postgraduates working in organic synthesis, catalysis, medicinal chemistry and drug discovery. P ractising researchers who want to refresh their knowledge of the field.Cuprins
Notă biografică
Roderick Bates Division of Chemistry and Biological Chemistry, School of Physical and Mathematical Sciences, Nanyang Technological University, Singapore
Descriere
Transition metals open up new opportunities for synthesis, because their means of bonding and their reaction mechanisms differ from those of the elements of the s and p blocks.