Chemistry of Dehydrogenation Reactions and Its Applications

Chemistry of Dehydrogenation Reactions and Its Applications portes grátis

Chemistry of Dehydrogenation Reactions and Its Applications

Mukherjee, Nandini; Gaur, Rama; Shahabuddin, Syed

Taylor & Francis Ltd

02/2024

276

Dura

Inglês

9781032343969

15 a 20 dias

Descrição não disponível.
Chapter 1 Introduction to Dehydrogenation Reactions of Organic Compounds
Chapter 2 Transition Metal-Based Catalyst for Dehydrogenation Reactions of Organic Compounds
Chapter 3 Transition Metal Catalyst Free Dehydrogenative Organic Synthesis: Role of New Materials, Composites, and Nanomaterials
Chapter 4 Dehydrogenation Reaction of Aliphatic and Aromatic Alcohols
Chapter 5 Dehydrogenation Reactions of Hydrocarbons: Alkane, Alkenes, and Aromatic Hydrocarbons
Chapter 6 Dehydrogenation Reactions of Aliphatic and Aromatic Amines
Chapter 7 Dehydrogenation Reactions of Aliphatic and Aromatic Carboxylic Acids and Their Derivatives
Chapter 8 Dehydrogenation Reactions of Heterocyclic Compounds and Their Derivatives
Chapter 9 Recent Advances in Dehydrogenative Technique for Hydrogen Energy Storage and Utilization
Chapter 10 Dehydrogenation Reactions and Inspirations from Nature for the Synthesis of Building Blocks Leading to Valued Pharmaceutical Compounds
Chapter 11 Industrial Applications of Dehydrogenation Reactions: Process Design of Reactors
Chapter 12 Future Aspects of Dehydrogenation Reactions
Chapter 13 Utilizing Ruthenium (Ru) Complexes in Dehydration Reactions of Saturated and Unsaturated Compounds
Chapter 14 Dehydrogenation Reactions Incorporating Membrane Catalysis
Chapter 15 A Greener Dehydrogenation: Environmentally Benign Reactions
Chapter 16 Application of Pt- and Non Pt-Based Zeolitic Catalysts for Dehydrogenation of Light Alkanes
Chapter 17 Porous Nanomaterials as Heterogeneous Catalysts for the Dehydrogenation of Paraffin
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heterogeneous catalysis;transition metal complexes;nanomaterial synthesis;green chemistry applications;energy storage materials;pharmaceutical intermediate production;catalytic hydrogen transfer processes