Description
Sonochemical Synthesis of Natural Products and Heterocycles of Pharmaceutical Importance: Strategy Towards a Sustainable Society comprehensively summarizes sonochemistry and ultrasound and their applicability to synthetic organic chemistry. Chapters demonstrate the application of sonochemistry to synthesizing molecules of natural origin, organic compounds containing N-heterocycles, O-heterocycles, and S-heterocycles, and the total synthesis and semisynthesis of bioactive compounds under ultrasonication through case studies and detailed illustrations and methodologies. Other sections explore sonochemical organic synthesis under solvent- and catalyst-free conditions, and in an aqueous medium as a green solvent, use of nanoparticles as efficient catalysts, and much more. This is a valuable resource for organic synthesis experts, specialists in natural products, advocates for sustainable chemistry, and researchers and professionals working in total synthesis, semisynthesis, organic synthesis, medicinal chemistry, and the pharmaceutical industries.- Provides a comprehensive introduction to sonochemistry and its application to synthetic organic chemistry- Demonstrates, through case studies, how ultrasound is used for developing efficient and sustainable methodologies for the synthesis of natural products and heterocycles- Explores the use of sonochemistry and ultrasound in a variety of fields, including green chemistry and pharmaceutical chemistry
Table of Contents
1. Introduction to Sonochemistry: Utilizing ultrasound for the synthesis of natural products and biologically relevant heterocycles of medicinal significance2. Advances in ultrasound-driven organic synthesis without solvents – A green chemistry perspective3. Advancements in ultrasound-assisted organic synthesis without catalysts – Towards sustainable chemistry4. Advances in ultrasound-assisted organic synthesis in eco-friendly mediums: A sustainable approach5. Advances in ultrasound-enhanced green organic synthesis utilizing nanoparticles as highly efficient catalysts6. Recent advancements in the eco-friendly synthesis of bioactive N- & O-heterocycles and naturally occurring N- & O-heterocycles using ultrasound7. Recent advancements in the green synthesis of bioactive S-heterocycles integrated with ultrasonication8. Advances in ultrasound-assisted synthesis of bioactive spiro compounds and naturally occurring spiro compounds: A clean and convenient approach9. Recent advances in the total synthesis of bioactive natural products using ultrasound10. Exploring the benefits of ultrasound in food science and technology – A clear perspective11. Synthesis of some drug molecules using ultrasound technology12. Ultrasound and sonochemistry: Addressing challenges and exploring perspectives
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