• Medientyp: Buch
  • Titel: Metal-organic frameworks for chemical reactions : from organic transformations to energy applications
  • Weitere Titel: Rückentitel: Metal-organic framework for chemical reactions
  • Beteiligte: Khan, Anish [HerausgeberIn]; Verpoort, Francis [HerausgeberIn]; Asiri, Abdullah Mohamed [HerausgeberIn]; Hoque, Md. Enamul [HerausgeberIn]; Bilgrami, Anwar L. [HerausgeberIn]; Azam, Mohammad [HerausgeberIn]; Naidu, K. Chandra Babu [HerausgeberIn]
  • Erschienen: Amsterdam; Kidlington, Oxford; Cambridge, MA: Elsevier, [2021]
  • Umfang: xiii, 485 Seiten; Illustrationen, Diagramme; 229 mm
  • Sprache: Englisch
  • ISBN: 9780128220993
  • RVK-Notation: VH 9700 : Allgemeines
  • Schlagwörter: Metallorganisches Netzwerk > Angewandte Forschung > Fotokatalyse > Energiespeicherung > Superkondensator > Elektrokatalyse
  • Entstehung:
  • Anmerkungen: Literaturangaben
    1. Metal-organic frameworks and their composites 2. Metal-organic framework for Batteries and supercapacitors 3. Titanium-based metal-organic frameworks for photocatalytic applications 4. Electrochemical aspects of metal-organic frameworks 5. Permeable metal-organic frameworks for fuel storage 6. Excessively paramagnetic metal organic frameworks nanocomposite 7. The Expanding Energy Prospects of Metal Organic Frameworks 8. Metal-Organic-Framework-Based Materials and Renewable Energy 9. Applications of Metal-Organic Frameworks in Analytical Chemistry 10. Modified metal-natural frameworks as photocatalysts 11. Shape designing of metal-organic frameworks 12. Thermo-mechanical and anti-corrosion characteristics of metal-organic frameworks (MOFs) 13. Metal-Organic Frameworks: Preparation and Application in Electrocatalytic CO2 Reduction Reaction 14. Metal-organic frameworks as diverse chemical applications 15. Metal-organic frameworks as chemical reactions flasks 16. Unique attributes of Metal Organic Frameworks in Drug Delivery 17. Metal-organic frameworks and permeable natural polymers for reasonable carbon dioxide fixation 18. Nanomaterials Derived from Metal-Organic Frameworks (MOFs) for Energy Storage Supercapacitor Application

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