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Metal-Organic Framework-Based Nanomaterials for Energy Conversion and Storage

Specificaties
Paperback, blz. | Engels
Elsevier Science | e druk, 2022
ISBN13: 9780323911795
Rubricering
Elsevier Science e druk, 2022 9780323911795
Onderdeel van serie Micro and Nano Technologies
Verwachte levertijd ongeveer 9 werkdagen

Samenvatting

Metal-Organic Framework-Based Nanomaterials for Energy Conversion and Storage addresses current challenges and covers design and fabrication approaches for nanomaterials based on metal organic frameworks for energy generation and storage technologies. The effect of synthetic diversity, functionalization, ways of improving conductivity and electronic transportation, tuning-in porosity to accommodate various types of electrolyte, and the criteria to achieve the appropriate pore size, shape and surface group of different metal sites and ligands are explored. The effect of integration of other elements, such as second metals or hetero-atomic doping in the system, to improve catalytic activity and durability, are also covered.

This is an important reference source for materials scientists, engineers and energy scientists looking to further their understanding on how metal organic framework-based nanomaterials are being used to create more efficient energy conversion and storage systems.

Specificaties

ISBN13:9780323911795
Taal:Engels
Bindwijze:Paperback

Inhoudsopgave

<p>Part I: Fundamentals<br>1. MOF-based nanostructures and nanomaterials for next-generation<br>energy storage: an introduction<br>2. Recent advances in MOFs for electrochemical energy storage<br>and conversion devices<br>3. Design and construction of MOF nanomaterials<br>4. Strategies to enhance the electrochemical properties of MOFs<br>5. Biological MOFs (bio-MOFs) for energy applications</p> <p>Part II: Metal-Organic frameworks for fuel cells<br>6. MOF-based electrocatalysts for oxygen evolution reactions<br>7. Recent development in MOFs for oxygen evolution reactions<br>8. Effect of structural modifications on the oxygen reduction reaction properties of metal-organic framework-based catalysts<br>9. Metal organic framework-based nanomaterials as suitable electrocatalysts for evolution of hydrogen</p> <p>Part III: Metal-organic frameworks for batteries<br>10. MOF nanomaterials for battery cathodes<br>11. MOFs and their derivatives for anode of high-performance<br>rechargeable batteries<br>12. Polyoxometalate-based metal organic frameworks (POMOFs)<br>for lithium-ion batteries<br>13. MOFs-based nanomaterials for metal-sulfur batteries<br>14. MOFs-based nanomaterials for metal-ion batteries<br>15. MOF-based nanomaterials for zinc-based battery cathodes<br>16. MOF-based electrolytes for battery applications</p> <p>Part IV: Metal-organic frameworks for supercapacitors<br>17. Recent development in MOFs for supercapacitor applications<br>18. MOFsemetal oxides/sulfides/phoshides nanocomposites for supercapacitors<br>19. MOFs-carbon nanocomposites for supercapacitors<br>20. Flexible supercapacitors based on nanocomposites of MOFs<br>21. Other nanocomposites of MOFs for supercapacitors</p> <p>Part V: Metal-organic frameworks for photovoltaics<br>22. MOFs-based dye-sensitized photovoltaics<br>23. Recent development in MOFs for perovskite-based solar cells<br>24. Integrating MOFs into dye-sensitized solar cells<br>25. Integrating MOFs into dye-sensitized solar cells</p> <p>Part VI: Metal-organic frameworks for fuel/gas storage<br>26. MOFs for hydrogen storage<br>27. Multicriteria decision making in organic-metal frameworks for fuel storage<br>28. Current development in MOFs for hydrogen storage: a mechanistic investigation<br>29. MOFs for solar photochemistry applications</p> <p>Part VII: Metal-organic franeworks for other applications<br>30. Metal-organic frameworks for nanogenerators<br>31. MOF-based photocatalysts for hydrogen generation by water splitting<br>32. Metal-organic framework for photocatalytic reduction of carbon dioxide<br>33. MOF-based advanced nanomaterials for electrocatalysis<br>applications</p>

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        Metal-Organic Framework-Based Nanomaterials for Energy Conversion and Storage