Catalysis with Sub-Nanometer Metal Clusters: A New Tool for Synthetic Chemistry
Editat de Antonio Leyva-Pérez, Belén Lerma-Berlangaen Limba Engleză Paperback – noi 2026
- Covers the growing importance of size-controlled catalysts and confinement effects that are critical for developing next-generation catalytic materials
- Offers a comprehensive resource for both academic researchers and industry professionals aiming to innovate and optimize catalytic processes for sustainable development
- Includes practical synthetic routes, structural diagrams, and mechanistic insights to support research and industrial development
- Incorporates visual aids such as flow charts, tables, and color figures to facilitate understanding of complex concepts and structures
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Specificații
ISBN-13: 9780443485336
ISBN-10: 044348533X
Pagini: 370
Dimensiuni: 152 x 229 mm
Editura: ELSEVIER SCIENCE
ISBN-10: 044348533X
Pagini: 370
Dimensiuni: 152 x 229 mm
Editura: ELSEVIER SCIENCE
Cuprins
1. General features of metal clusters
2. Control of Pd catalyst's sites in solution for C-C coupling reactions.
3. Molybdenum sulfide clusters for the synthesis of fine chemicals.
4. Size-selective Gold clusters protected by organic ligands in homogeneous catalysis in oxidation reactions.
5. Hydroxyapatite-Supported Pd Nanoclusters as Efficient Catalysts for selective oxidation of alcohols.
6. Pt supported clusters for H2 production.
7. Confined metal clusters in zeolic materials for heterogeneous catalysis.
8. Confinement of Atomically Precise Nanoclusters within Metal–Organic Frameworks for Advanced Catalysis.
9. Computational study of metal cluster placement on porous supports for catalytic applications.
10. New chemical reactivity for industrial synthesis
11. Conclusions and outlooks.
2. Control of Pd catalyst's sites in solution for C-C coupling reactions.
3. Molybdenum sulfide clusters for the synthesis of fine chemicals.
4. Size-selective Gold clusters protected by organic ligands in homogeneous catalysis in oxidation reactions.
5. Hydroxyapatite-Supported Pd Nanoclusters as Efficient Catalysts for selective oxidation of alcohols.
6. Pt supported clusters for H2 production.
7. Confined metal clusters in zeolic materials for heterogeneous catalysis.
8. Confinement of Atomically Precise Nanoclusters within Metal–Organic Frameworks for Advanced Catalysis.
9. Computational study of metal cluster placement on porous supports for catalytic applications.
10. New chemical reactivity for industrial synthesis
11. Conclusions and outlooks.