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Full Description
Nanocomposites play a vital role as catalysts during organic synthesis. Catalytic applications remain an emerging area of interest, especially the synergism between morphological aspects and catalytic performance. The strong interfacial interaction of reactant with the surface of nanocomposites during reaction gives an enhancement in rate and yield of the product. This book explores the advantages of nanocomposite catalysts when compared with conventional catalysts, covering oxidation, reduction, hydrogenation, coupling, and rearrangement reactions catalysed by nanocomposite catalysts along with synthesis of rings, heterocyclic systems and name reactions.
Contents
Nanocomposites: Sustainable Heterogeneous Catalysts
Synthesis Strategies for the Design of Nanocomposite Catalysts
Physicochemical Properties of Nanocomposite Catalysts
Polymer Based Nanocomposites as Catalysts in Organic Reactions
Carbon-based Nanocomposites as Catalysts in Organic Reactions
Metal-Organic Frameworks and Graphene Based Nanocomposites in Catalytic Applications
Metal-Organic Framework (MOF)-based Nanocomposites as Catalysts in Organic Reactions
Biomolecule Based Nanocomposites as Catalysts in Organic Reactions
Nanocomposites as Catalysts for Organic Reduction Reactions
Nanocomposites as Catalysts for Organic Oxidation Reactions
Nanocomposites as Catalysts in Organic Photochemistry
Nanocomposites as Catalysts in Organic Coupling Reactions
Nanocomposites as Catalysts in Organic Rearrangement Reactions
Nanocomposites as Catalysts in Organic Condensation Reactions
Magnetic Nanocomposites as Catalysts in Organic Reactions
Nanocomposites as Catalysts in Heterocyclic Reactions
Nanocomposites Based on Silver Nanoparticles for Hydrogenation Reactions in Polluted Water
Nanocomposites as Catalysts in Organic Name Reactions