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Heterocyclic chemistry / J. A. Joule

By: Material type: TextTextPublication details: Oxford : Blackwell Science, 2000Description: xi, 589 pISBN:
  • 9788126516070
Subject(s): DDC classification:
  • 547.59 J824
Contents:
1. Structures and spectroscopic properties of aromatic heterocycles 2. Reactivity of aromatic heterocycles 3. Synthesis of aromatic heterocycles 4. Typical reactivity of pyridines, quinolines and isoquinolines 5. Pyridines: reactions and synthesis 6. Quinolines and isoquinolines: reactions and synthesis 7. Typical reactivity of pyrylium and benzopyrylium ions, pyrones and benzopyrones 8. Pyryliums, 2-and 4-pyrones: reactions and synthesis 9. Benzopyryliums, benzopyrones: reactions and synthesis 10. Typical reactivity of the diazines: pyridazine, pyrimidine and pyrazine 11. diazines: pyridazine, pyrimidine, and pyrazine: reactions and synthesis 12. Typical reactivity of pyrroles, thiophenes, and furans 13. Pyrroles: reactions and synthesis 14. Thiophenes: reactions and synthesis 15. Furans: reactions and synthesis 16. Typical reactivity of indoles, benzo[b]thiophenes, benzo[b]furns, isoindoles, benzo[c]thiophenes and isobenzofurans 17. Indoles: reactions and synthesis 18. Benzo[b]thiophenes and benzo[b]furans: reactions and synthesis 19. Isoindoles, benzo[c]thiophenes and isobenzofurans: reactions and synthesis 20. Typical reactivity of 1,3- and 1,2-azoles 21. 1,3-Azoles: imidazoles, thiazoles, and oxazoles: reactions and synthesis 22. 1,2-Azoles: pyrazoles, isothiazoles, isoxazoles: reactions and synthesis 23. Benzanellated azoles: reactions and synthesis 24. Purines: reactions and synthesis 25. Heterocycles containing a ring-junction nitrogen 26. Heterocycles containing more than two hetero atoms 27. Saturated and partially unsaturated heterocyclic compounds: reactions and synthesis 28. Heterocycles at work.
List(s) this item appears in: Chemistry
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Books Books UE-Central Library 547.59 J824 (Browse shelf(Opens below)) Available T9543

1. Structures and spectroscopic properties of aromatic heterocycles
2. Reactivity of aromatic heterocycles
3. Synthesis of aromatic heterocycles
4. Typical reactivity of pyridines, quinolines and isoquinolines
5. Pyridines: reactions and synthesis
6. Quinolines and isoquinolines: reactions and synthesis
7. Typical reactivity of pyrylium and benzopyrylium ions, pyrones and benzopyrones
8. Pyryliums, 2-and 4-pyrones: reactions and synthesis
9. Benzopyryliums, benzopyrones: reactions and synthesis
10. Typical reactivity of the diazines: pyridazine, pyrimidine and pyrazine
11. diazines: pyridazine, pyrimidine, and pyrazine: reactions and synthesis
12. Typical reactivity of pyrroles, thiophenes, and furans
13. Pyrroles: reactions and synthesis
14. Thiophenes: reactions and synthesis
15. Furans: reactions and synthesis
16. Typical reactivity of indoles, benzo[b]thiophenes, benzo[b]furns, isoindoles, benzo[c]thiophenes and isobenzofurans
17. Indoles: reactions and synthesis
18. Benzo[b]thiophenes and benzo[b]furans: reactions and synthesis
19. Isoindoles, benzo[c]thiophenes and isobenzofurans: reactions and synthesis
20. Typical reactivity of 1,3- and 1,2-azoles
21. 1,3-Azoles: imidazoles, thiazoles, and oxazoles: reactions and synthesis
22. 1,2-Azoles: pyrazoles, isothiazoles, isoxazoles: reactions and synthesis
23. Benzanellated azoles: reactions and synthesis
24. Purines: reactions and synthesis
25. Heterocycles containing a ring-junction nitrogen
26. Heterocycles containing more than two hetero atoms
27. Saturated and partially unsaturated heterocyclic compounds: reactions and synthesis
28. Heterocycles at work.

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