Titre : |
Nanotechnology in catalysis - volume 1 : Applications in the chemical industry, energy development, and environment protection |
Type de document : |
texte imprimé |
Auteurs : |
Sels, Bert, Éditeur scientifique ; Van de Voorde, Marcel, Éditeur scientifique |
Editeur : |
Wiley-VCH Verlag |
Année de publication : |
2017 |
Importance : |
xxxv, 381 p. |
ISBN/ISSN/EAN : |
978-3-527-33914-3 |
Langues : |
Anglais (eng) |
Catégories : |
Catalyse
|
Tags : |
CATALYSIS NANOTECHNOLOGY CATALYSIS-INDUSTRIAL APPLICATIONS |
Index. décimale : |
B-E |
Résumé : |
Reflecting the R&D efforts in the field that have resulted in a plethora of novel applications over the past decade, this handbook gives a comprehensive overview of the tangible benefits of nanotechnology in catalysis. By bridging fundamental research and industrial development, it provides a unique perspective on this scientifically and economically important field.
While the first three parts are devoted to preparation and characterization of nanocatalysts, the final three provide in-depth insights into their applications in the fine chemicals industry, the energy industry, and for environmental protection, with expert authors reporting on real-life applications that are on the brink of commercialization.
Timely reading for catalytic chemists, materials scientists, chemists in industry, and process engineers. |
Note de contenu : |
"* Liquid-Phase Synthesis of Nanocatalysts
* Supported Gold Nanoparticles Leading to Green Chemistry
* Application of Nanocarbon Materials to Catalysis
* Nano-Oxide Mesoporous Catalysts in Heterogeneous Catalysis
* Solution Combustion Synthesis, Characterization, and Catalytic Properties of Oxide Materials
* Nanostructured Porous Materials: Synthesis and Catalytic Applications
* Core Magnetic Composites for Catalytic Applications
* Metal Nanoparticles Supported on Magnetically Separable Materials
* Tuning the Activity of Supported Nanoparticles Through Charge Transfer
* Metal–Organic Framework-Mediated Synthesis in Catalysis
* Sustainable Routes for Synthesis of Zeolite Catalysts
* Superior Porous Zeolite Catalysts
* Diffusion in Nanocatalysis
* Atomic Layer Deposition for Catalysis
* Digital Fabrication in Catalytic Technology". |
Cote : |
B-E098-1 |
Num_Inv : |
640 |
Localisation : |
LCC (SdS) |
Nanotechnology in catalysis - volume 1 : Applications in the chemical industry, energy development, and environment protection [texte imprimé] / Sels, Bert, Éditeur scientifique ; Van de Voorde, Marcel, Éditeur scientifique . - Wiley-VCH Verlag, 2017 . - xxxv, 381 p. ISBN : 978-3-527-33914-3 Langues : Anglais ( eng)
Catégories : |
Catalyse
|
Tags : |
CATALYSIS NANOTECHNOLOGY CATALYSIS-INDUSTRIAL APPLICATIONS |
Index. décimale : |
B-E |
Résumé : |
Reflecting the R&D efforts in the field that have resulted in a plethora of novel applications over the past decade, this handbook gives a comprehensive overview of the tangible benefits of nanotechnology in catalysis. By bridging fundamental research and industrial development, it provides a unique perspective on this scientifically and economically important field.
While the first three parts are devoted to preparation and characterization of nanocatalysts, the final three provide in-depth insights into their applications in the fine chemicals industry, the energy industry, and for environmental protection, with expert authors reporting on real-life applications that are on the brink of commercialization.
Timely reading for catalytic chemists, materials scientists, chemists in industry, and process engineers. |
Note de contenu : |
"* Liquid-Phase Synthesis of Nanocatalysts
* Supported Gold Nanoparticles Leading to Green Chemistry
* Application of Nanocarbon Materials to Catalysis
* Nano-Oxide Mesoporous Catalysts in Heterogeneous Catalysis
* Solution Combustion Synthesis, Characterization, and Catalytic Properties of Oxide Materials
* Nanostructured Porous Materials: Synthesis and Catalytic Applications
* Core Magnetic Composites for Catalytic Applications
* Metal Nanoparticles Supported on Magnetically Separable Materials
* Tuning the Activity of Supported Nanoparticles Through Charge Transfer
* Metal–Organic Framework-Mediated Synthesis in Catalysis
* Sustainable Routes for Synthesis of Zeolite Catalysts
* Superior Porous Zeolite Catalysts
* Diffusion in Nanocatalysis
* Atomic Layer Deposition for Catalysis
* Digital Fabrication in Catalytic Technology". |
Cote : |
B-E098-1 |
Num_Inv : |
640 |
Localisation : |
LCC (SdS) |
| |