Fundamentals of heterocyclic chemistry: importance in nature and in the synthesis of pharmaceuticals

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Fundamentals of heterocyclic chemistry: importance in nature and in the synthesis of pharmaceuticals

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  • FUNDAMENTALS OF HETEROCYCLIC CHEMISTRY

    • CONTENTS

    • Chapter 1 THE SCOPE OF THE FIELD OF HETEROCYCLIC CHEMISTRY

      • References

      • 2.2. Naming Simple Monocyclic Compounds

      • 2.3. Handling the “Extra Hydrogen”

      • 2.5. Rings With More Than One Heteroatom

      • 2.8. The Replacement Nomenclature System

      • 2.9. Saturated Bridged Ring Systems

      • 3.2. Naturally Occurring Nitrogen Heterocyclic Compounds

      • 3.4. Sulfur and Phosphorus Heterocyclic Compounds in Nature

      • 4.2. Some of the Classic Synthetic Methods

      • 4.3. Cyclizations Involving Metallic Complexes as Catalysts

      • 4.4. Cyclizations with Radical Intermediates

      • 4.5. Cyclizations by Intramolecular Wittig Reactions

      • 4.6. Synthesis of Heterocycles by the Alkene Metathesis Reaction

      • Chapter 5 SYNTHESIS OF HETEROCYCLIC SYSTEMS BY CYCLOADDITION REACTIONS

        • 5.1. The Diels–Alder Reaction

        • 6.2. Review of the Aromaticity of Benzene

        • Chapter 9 SYNTHETIC METHODS FOR SOME PROMINENT HETEROCYCLIC FAMILIES: EXAMPLES OF PHARMACEUTICALS SYNTHESIS

          • 9.1. Scope of the Chapter

          • 9.11. 1,3,4-Thiadiazoles and other 5-Membered Systems

          • 9.17. Fused Pyrimidines: Purines and Pteridines

          • 10.2. Special Properties of Three-Membered Rings

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