이 상품은 구매 후 지원 기기에서 예스24 eBook앱 설치 후 바로 이용 가능한 상품입니다.
|
Preface • Importance of heterocycles in chemistry and biology • Role of photocatalysis in green and sustainable chemistry • Scope and objective of the book Section I: Heterocyclic Compounds and Their Importance 1. Importance of Heterocycles in Modern Applications 2. Challenges in the Synthesis of Heterocycles Section II: Introduction to Photocatalysis 3. Overview of Photocatalysis in Organic Synthesis 4. History and Principles of Light-driven Reactions in Organic Synthesis 5. Photophysical and Photochemical Process of Heterocyclic Compounds 6. Types of Photocatalysts: Application in Heterocycle Synthesis 7. Mechanism of Photocatalysis 8. Investigation of Photocatalytic Mechanism Through Computational and Spectroscopic Approaches Section III: Photocatalytic Pathways for Heterocyclic Synthesis 9. Radical and Ionic Pathways in Heterocyclic Formation 10. Functionalization of Pre-existing Heterocycles Using Photoredox Catalysis 11. Metal-catalyzed Annulation Reactions for the Construction of Heterocycles Using para-Quinone Methides 12. Metal-free Photocatalyst for Heterocycle Synthesis Section IV: Photocatalytic Synthesis of Five- and Six-membered Heterocycles 13. Photocatalytic Synthesis of Five-membered Heterocycles Containing One Hetero Atom 14. Photocatalytic Synthesis of Six-membered Heterocycles Containing One Hetero Atom 15. Photocatalytic Synthesis of Six-membered Heterocycles Containing More Than One Hetero Atom Section V: Photocatalytic Synthesis of Fused and Polycyclic Heterocycles 16. Photocatalytic Synthesis of Fused N-heterocycles 17. Photocatalytic Synthesis of O-fused Heterocycles 18. Visible Light-promoted Photocatalytic C(sp2)-H Functionalization of Coumarins Section VI: Sustainable aspects of photocatalysis 19. Green Chemistry Principles in Photocatalyzed Synthesis of Heterocycles 20. Photocatalysis for Energy Efficiency -Waste Management, Atom Economy, and Energy-efficient Technologies in Photocatalysis 21. Photocatalysis in Chemical Engineering and Continuous Flow Technologies for Heterocycle Synthesis 22. Photocatalytic Technologies for Sustainable Waste Management and Solar Energy Conversion Section VII: Conclusion 23. Future Scope and Challenges: Scalability of Photocatalytic Reactions 24. Compatibility of Photocatalyst with Diverse Substrates 25. Challenges and Future Scope of Photocatalysis |
Pranjal K. Baruah is a Professor at Gauhati University. He obtained his PhD from NCL, Pune, followed by postdoctoral research at UNC at Chapel Hill, USA, and as a Marie Curie Fellow at the University of Oxford, UK. His research spans catalysis, synthetic methodology, C?H functionalization, nanomaterials, medicinal chemistry, and sustainable technologies. He has supervised several PhD scholars and authored over 85 publications and many book chapters. Dr. Baruah serves on editorial boards of reputed journals and was ranked among the top 5% most-cited RSC journal authors in 2020.
Pallabi Borah is an Assistant Professor in the Department of Chemistry at Assam Don Bosco University, Assam, India. Her research interests include heterocycle synthesis, green and sustainable chemistry, catalysis, and nanomaterials.
Subhasish Roy is an Assistant Professor in the Department of Chemistry at Assam Don University, Assam, India. His research interests include cross-coupling reactions, heterocycle synthesis, nanoparticle synthesis, metal complex synthesis, C?H activation reactions, cycloaddition reactions, photocatalytic transformations, and the design of green catalysts for organic transformations.