Green Synthetic Approaches for Biologically Relevant Heterocycles
eBook - ePub

Green Synthetic Approaches for Biologically Relevant Heterocycles

Volume 1: Advanced Synthetic Techniques

  1. 646 pages
  2. English
  3. ePUB (mobile friendly)
  4. Available on iOS & Android
eBook - ePub

Green Synthetic Approaches for Biologically Relevant Heterocycles

Volume 1: Advanced Synthetic Techniques

About this book

Green Synthetic Approaches for Biologically Relevant Heterocycles, Second Edition, Volume One: Advanced Synthetic Techniques reviews this significant group of organic compounds within the context of sustainable methods and processes, expanding on the first edition with fully updated coverage and a whole range of new chapters. Volume One explores advanced synthetic techniques, with each chapter presenting in-depth coverage of various green protocols for the synthesis of a wide variety of bioactive heterocycles that are classified on the basis of ring-size and/or the presence of heteroatoms. Techniques covered range from high pressure cycloaddition reactions and microwave irradiation to sustainable one-pot domino reactions. This updated edition is an essential resource on sustainable approaches for academic researchers, R&D professionals, and students working across medicinal, organic, natural product and green chemistry. - Provides fully updated coverage of the field of greener heterocycle synthesis - Includes new chapters on varied multicomponent reactions, alongside both traditional and novel approaches - Presents information in an accessible style with an emphasis on sustainability

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Yes, you can access Green Synthetic Approaches for Biologically Relevant Heterocycles by Goutam Brahmachari in PDF and/or ePUB format, as well as other popular books in Physical Sciences & Organic Chemistry. We have over one million books available in our catalogue for you to explore.

Information

Publisher
Elsevier
Year
2021
eBook ISBN
9780323851305

Table of contents

  1. Title of Book
  2. Cover image
  3. Title page
  4. Table of Contents
  5. Copyright
  6. Dedication
  7. List of contributors
  8. Editor
  9. Foreword
  10. Preface
  11. Chapter 1 Green synthetic approaches for biologically relevant heterocycles: advanced synthetic techniques—an overview
  12. Chapter 2 High-pressure cycloaddition reactions in the synthesis of biologically relevant heterocycles
  13. Chapter 3 Microwave-assisted synthesis of medicinally privileged heterocycles
  14. Chapter 4 Application of microwave irradiation in the synthesis of P-heterocycles
  15. Chapter 5 Microwave-assisted multicomponent reactions as a green synthetic approach to heterocycles: special reference to Hantzsch, Biginelli, and Groebke–Blackburn–Bienayme reactions
  16. Chapter 6 Use of ball milling for the synthesis of biologically active heterocycles
  17. Chapter 7 Recent advances in photocatalytic Minisci reaction: an eco-friendly functionalization of biologically relevant heteroarenes
  18. Chapter 8 Recent advances for construction and late-stage diversification of indole core via C–H bond activation/functionalization
  19. Chapter 9 Cycloaddition reactions in ionic liquids for the synthesis of biologically relevant heterocycles
  20. Chapter 10 Advances in greener processes for triazole synthesis via azide-alkyne cycloaddition reactions
  21. Chapter 11 Employing arynes in transition-metal-free synthesis of benzo-fused five and six-membered heterocycles: an update
  22. Chapter 12 Multicomponent approach for the sustainable synthesis of lawsone-based heterocycles
  23. Chapter 13 Synthesis of biologically relevant heterocyclic skeletons under solvent-free condition
  24. Chapter 14 Ultrasound-promoted metal-catalyzed synthesis of heterocyclic compounds of medicinal interest
  25. Chapter 15 Ultrasonication under catalyst-free condition: an advanced synthetic technique toward the green synthesis of bioactive heterocycles
  26. Chapter 16 Self-catalytic techniques for the synthesis of biologically relevant heterocyclic scaffolds at room temperature: a recent update
  27. Index