Metal Oxides and Related Solids for Electrocatalytic Water Splitting: Metal Oxides
Editat de Junlei Qien Limba Engleză Paperback – 17 mai 2022
Each chapter introduces important properties and material design strategies, including composite and morphology design. There is also an emphasis on cost-effective materials design and fabrication for optimized performance for electrocatalytic water splitting applications. Lastly, the book touches on recently developed in-situ characterization methods applied to observe and control the material synthesis process.
- Introduces metal oxide-based materials for electrocatalytic water splitting applications, including their key properties, synthesis, design and fabrication strategies
- Reviews the most relevant materials design strategies, including defect engineering, interface engineering, and doping engineering
- Discusses the pros and cons of metal oxide-based materials for water splitting applications to aid in materials selection
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Specificații
ISBN-13: 9780323857352
ISBN-10: 0323857353
Pagini: 404
Ilustrații: 170 illustrations (40 in full color)
Dimensiuni: 152 x 229 mm
Greutate: 0.54 kg
Editura: ELSEVIER SCIENCE
Seria Metal Oxides
ISBN-10: 0323857353
Pagini: 404
Ilustrații: 170 illustrations (40 in full color)
Dimensiuni: 152 x 229 mm
Greutate: 0.54 kg
Editura: ELSEVIER SCIENCE
Seria Metal Oxides
Public țintă
Primary: Materials Scientists and EngineersSecondary: Chemical Engineers; Inorganic Chemists
Cuprins
Part I - Introduction to Metal Oxide-Based Electrocatalysis 1. Introduction to water splitting technologies 2. The Fundamentals of Metal Oxides for Electrocatalytic Water Splitting 3. Features of Design and Fabrication of Metal Oxide-Based Electrocatalysts 4. Noble Metal Oxide Based Electrodes Interfaces Design for Application in Water Splitting
Part II - Transition Metal Oxides and Their Prospects for Application in Water Splitting 5. Structure and Basic Properties of Transition Metal Oxides designed for Application in Water Splitting 6. Defect Engineering for Modifying Transition Metal Oxides 7. Interfaces Joining for Modifying Transition Metal Oxides 8. Doping Engineering Towards Metal Oxides for Water Splitting
Part III - Other approaches to developing electrocatalysts for water splitting 9. Layered hydroxides as electrocatalysts for water splitting 10. Metal Oxy Compounds Heterogeneous Interfaces Joining for Water Splitting 11. Metal phosphide based electrocatalysts for water splitting 12. Metal-Organic Framework (MOF)-Derived Electrocatalysts for Water Splitting 13. In-Situ Characterizations for Application in Water Splitting 14. Summary and outlook
Part II - Transition Metal Oxides and Their Prospects for Application in Water Splitting 5. Structure and Basic Properties of Transition Metal Oxides designed for Application in Water Splitting 6. Defect Engineering for Modifying Transition Metal Oxides 7. Interfaces Joining for Modifying Transition Metal Oxides 8. Doping Engineering Towards Metal Oxides for Water Splitting
Part III - Other approaches to developing electrocatalysts for water splitting 9. Layered hydroxides as electrocatalysts for water splitting 10. Metal Oxy Compounds Heterogeneous Interfaces Joining for Water Splitting 11. Metal phosphide based electrocatalysts for water splitting 12. Metal-Organic Framework (MOF)-Derived Electrocatalysts for Water Splitting 13. In-Situ Characterizations for Application in Water Splitting 14. Summary and outlook