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The solvent-free approach provides green and alternative synthetic methods for obtaining diverse bioactive heterocycles. The solvent is frequently the primary component of synthetic protocol and contributes to significant waste. Additionally, its removal processes are energy intensive and substantial. This book explores different solvent-free procedures for efficiently synthesising heterocyclic analogues of immense biological importance and other applications.
Heterogeneous catalysts are an important tool for greener catalytic processes due to the ease of their removal from the reaction mixture and feasibility of reuse. When these catalysts can operate in the ideal green solvent, water, they improve the sustainability of the process. This book explores aqueous mediated heterogeneous catalysts and their use in synthesis. Topics covered include nanomaterials, quantum dots, metal organic frameworks, and their use as catalysts.
Over the years, the uses and applications of various non-conventional solvents such as ionic liquids, deep eutectic solvents, crown ethers, fluorinated solvents, glycols, glycerol etc diversified in various fields. This book consists of nine chapters, which present recent advances and outlook on various non-conventional solvents in organic transformations. Comparison between traditional solvents and non-conventional solvents are also highlighted in this book.
This textbook is a concise introduction to heterogeneous catalysis, focusing on the fundamentals and industrial implementation. It is written in a clear manner using language that is easily accessible to undergraduate students in chemical engineering and industrial chemistry. The textbook includes exercise problems and practice software. New in this edition are sections on catalyst preparation and manufacture, kinetic parameter estimation, and catalytic transport-line reactors. Solutions to all the example problems are now provided.
Over the years, applications of various non-conventional solvents diversified in various fields such as organic synthesis, natural products, drug design, pharmaceuticals, dyes and agrochemical industries. This book consists of nine chapters, which present recent advances and applications of various non-conventional solvents in organic transformations, drug design and bioremediation. Environmental impacts of non-conventional solvents and comparison between traditional solvents and non-conventional solvents are also discussed in this book.
Magnetic nanocatalysts are becoming an important tool for greener catalytic processes in chemical transformations in view of the ease of their removal from a reaction medium. This book explores assorted magnetic nanocatalysts, their deployment in synthesis, chemical transformation and their recovery and reuse. Various thematic topics embodied include magnetic nanocatalysts for S-S bond formation, N-heterocycle formation, C-heteroatom bond formation, silica-supported catalysts, multicomponent reactions, including their recyclability; another available volume emphasizes the utility of magnetic nanocatalysts in industrial appliances.
Drug repurposing, or drug repositioning, or reprofiling, has emerged as a valid approach in modern drug discovery. The book describes tools and techniques for identifying new therapeutic potentials for existing drugs and covers the repurposing of drugs from synthetic and natural origin. It compares the costs of drug repurposing with traditional drug discovery and discusses challenges and future perspectives of drug repurposing.
The book presents a succinct summary of methods for the synthesis and biological activities of various different-sized bioactive heterocycles using different green chemistry synthetic methodologies, like microwave, ultrasonic, water mediated, ionic liquids, etc. The book also provides an insight of how green chemistry techniques are specific to the bioactive heterocyclic compounds.