Doping of Metal Oxides: From Fundamentals to Applications: Metal Oxides
Editat de Subhendu Chakroborty, Srikanta Moharana, Bibhuti Bhusan Sahu, Santosh Kumar Satpathyen Limba Engleză Paperback – iul 2025
The book also explores the challenges and limitations in doping metal oxides and offers insights into emerging trends and future prospects, adopting a systematic and logical approach focused on providing an in-depth understanding of the concept of doping, synthesis, and characterization techniques.
- Provides a comprehensive overview of doping of metal oxides, from fundamentals to synthesis, characterization, and applications
- Presents a broad range of applications for doped metal oxides, including energy, electronic devices, optoelectronics, sensors, electrocatalysis and photocatalysis, photo-electrochemical water splitting, environmental remediation, dye degradation, batteries, and solar cells
- Addresses not only the exciting possibilities of new doped metal oxide materials but also the challenges inherent in their development and exploitation
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Specificații
ISBN-13: 9780443292712
ISBN-10: 044329271X
Pagini: 550
Dimensiuni: 152 x 229 mm
Editura: ELSEVIER SCIENCE
Seria Metal Oxides
ISBN-10: 044329271X
Pagini: 550
Dimensiuni: 152 x 229 mm
Editura: ELSEVIER SCIENCE
Seria Metal Oxides
Cuprins
Section 1: Introduction and fundamentals of doped metal oxides
1. Fundamentals of metal oxide and doping mechanism and strategies
2. Defect chemistry of doped metal oxides
Section 2: Synthesis, properties, and characterisation of doped metal oxides
3. Synthesis methods for doped metal oxides
4. Doped metal oxides: Structural and morphological properties
5. Doped metal oxides: Electrical and electronic properties
6. Doped metal oxides: Optical and luminescent properties
7. Electrochemical properties of doped metal oxides
8. Doped metal oxides: Prediction of properties by machine learning
Section 3: Applications of doped metal oxides
9. Rare earth doped metal oxide for energy storage and conversion
10. Doped metal oxide for batteries and supercapacitors
11. Doped metal oxide for electrochemical and fuel cell applications
12. Metal oxide doping for solar cell applications
13. Metal oxide doping for optoelectronic device application
14. Doped metal oxides for LED and laser technologies
15. Metal oxide doping for sensor applications
16. Metal oxide doping for electrocatalysis and photocatalysis applications
17. Doped metal oxide for environmental remediation
18. Metal oxide doping for biomedical applications
19. Doped metal oxide for dielectric applications
20. Doped metal oxide: photoelectrochemical water splitting for renewable hydrogen production
21. Doped metal oxides: Emerging trends, future prospects and challenges
1. Fundamentals of metal oxide and doping mechanism and strategies
2. Defect chemistry of doped metal oxides
Section 2: Synthesis, properties, and characterisation of doped metal oxides
3. Synthesis methods for doped metal oxides
4. Doped metal oxides: Structural and morphological properties
5. Doped metal oxides: Electrical and electronic properties
6. Doped metal oxides: Optical and luminescent properties
7. Electrochemical properties of doped metal oxides
8. Doped metal oxides: Prediction of properties by machine learning
Section 3: Applications of doped metal oxides
9. Rare earth doped metal oxide for energy storage and conversion
10. Doped metal oxide for batteries and supercapacitors
11. Doped metal oxide for electrochemical and fuel cell applications
12. Metal oxide doping for solar cell applications
13. Metal oxide doping for optoelectronic device application
14. Doped metal oxides for LED and laser technologies
15. Metal oxide doping for sensor applications
16. Metal oxide doping for electrocatalysis and photocatalysis applications
17. Doped metal oxide for environmental remediation
18. Metal oxide doping for biomedical applications
19. Doped metal oxide for dielectric applications
20. Doped metal oxide: photoelectrochemical water splitting for renewable hydrogen production
21. Doped metal oxides: Emerging trends, future prospects and challenges