Joule / Gribble | Progress in Heterocyclic Chemistry | Buch | 978-0-08-044482-6 | sack.de

Buch, Englisch, 484 Seiten, Format (B × H): 164 mm x 237 mm, Gewicht: 1020 g

Reihe: Progress in Heterocyclic Chemistry

Joule / Gribble

Progress in Heterocyclic Chemistry

Buch, Englisch, 484 Seiten, Format (B × H): 164 mm x 237 mm, Gewicht: 1020 g

Reihe: Progress in Heterocyclic Chemistry

ISBN: 978-0-08-044482-6
Verlag: Elsevier Science & Technology


This is the sixteenth annual volume of Progress in Heterocyclic Chemistry, and covers the literature published during 2003 on most of the important heterocyclic ring systems.This volume opens with two specialized reviews. The first covers 'Lamellarins: Isolation, activity and synthesis' a significant group of biologically active marine alkaloids and the second discusses 'Radical Additions to Pyridines, Quinolines and Isoquinolines'. The remaining chapters examine the recent literature on the common heterocycles in order of increasing ring size and the heteroatoms present.
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Weitere Infos & Material


Chapter 1: Lamellarins: Isolation, activity and synthesis.

Chapter 2: Radical additions to pyridines, quinolines and isoquinolines.

Chapter 3: Three-membered ring systems.

Chapter 4: Four-membered ring systems.

Chapter 5: Five-Membered Ring Systems

Part 1. Thiophenes & Se, Te Analogs.

Part 2. Pyrroles and Benzo Derivatives.

Part 3. Furans and Benzofurans.

Part 4. With More than One N Atom.

Part 5. With N & S (Se) Atoms.

Part 6. With O & S (Se, Te).

Part 7. With O & N.

Chapter 6: Six-Membered Ring Systems

Part 1. Pyridines and Benzo Derivatives.

Part 2. Diazines and Benzo Derivatives.

Part 3. Triazines, Tetrazines and Fused Ring Polyaza Systems.

Part 4. With O and/or S Atoms.

Chapter 7: Seven-Membered Ring Systems.

Chapter 8: Eight-Membered and Larger Ring Systems.

Index.


Gribble, Gordon
Gordon Gribble is the Dartmouth Professor of Chemistry at Dartmouth College, Hanover, USA. His research program covers several areas of organic chemistry, most of which involve synthesis, including novel indole chemistry, triterpenoid synthesis, DNA intercalation, and new synthetic methodology. Prof. Gribble also has a deep interest in naturally occurring organohalogen compounds and in the chemistry of wine and wine making.


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