Multifunctional Piezoelectric Oxide Nanostructures: Fabrication Methods, Devices and Applications: Metal Oxides
Editat de Sang-Jae Kim, Nagamalleswara Rao Alluri, Yuvasree Purusothaman Ghenadii Korotcenkoven Limba Engleză Paperback – dec 2023
- Reviews fundamentals, materials, technologies and applications of piezoelectric oxide nanostructures
- Addresses the most relevant applications in sensing (self-powered, biomedical, MEMS, infrared) and energy harvesting
- Discusses the growth, design and fabrication of piezoelectric oxide nanostructured materials for desirable properties
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Specificații
ISBN-13: 9780128193327
ISBN-10: 0128193328
Pagini: 600
Ilustrații: Approx. 180 illustrations (30 in full color)
Dimensiuni: 152 x 229 mm
Editura: ELSEVIER SCIENCE
Seria Metal Oxides
ISBN-10: 0128193328
Pagini: 600
Ilustrații: Approx. 180 illustrations (30 in full color)
Dimensiuni: 152 x 229 mm
Editura: ELSEVIER SCIENCE
Seria Metal Oxides
Cuprins
Section 1: Fundamentals 1. Fundamental Piezoelectric Theoretical Concepts and Future Perspectives 2. Electromechanical Properties and Electrocaloric Effects of Oxide Materials 3. Intrinsic coupling among piezoelectric-semiconductor-optical effects of oxide materials: Fundamentals, and Devices
Section 2: Materials and Technologies 4. Advances in Growth of Zinc Oxide Nanostructures: Methods, Doping Effects and the Parent Material for Current Nanogenerators 5. Perovskite Structured Pyroelectrics: Materials, Applications and Challenges 6. Design of Multiferroic Heterostructures with Strong Magnetoelectric Coupling 7. Printed piezoelectric materials for devices and applications 8. Engineered Inorganic Piezoelectric Oxides/Polymer Interfaces for Flexible Self-Powered Electronics 9. Porous piezoelectric ceramics
Section 3: Applications 10. Composite Multiferroics for Magnetic Energy Harvesting 11. Piezoelectrochemical Devices: Fabrication and Mechanisms 12. Piezoelectric oxides for biomedical applications 13. Piezoelectric micromanipulators 14. Advances in Piezoelectric MEMS technology 15. High-Temperature Piezoelectric applications 16. Surface Acoustic Wave (SAW) Devices (Filters and Sensors) 17. Pyroelectric Infrared (IR) Sensors
Section 2: Materials and Technologies 4. Advances in Growth of Zinc Oxide Nanostructures: Methods, Doping Effects and the Parent Material for Current Nanogenerators 5. Perovskite Structured Pyroelectrics: Materials, Applications and Challenges 6. Design of Multiferroic Heterostructures with Strong Magnetoelectric Coupling 7. Printed piezoelectric materials for devices and applications 8. Engineered Inorganic Piezoelectric Oxides/Polymer Interfaces for Flexible Self-Powered Electronics 9. Porous piezoelectric ceramics
Section 3: Applications 10. Composite Multiferroics for Magnetic Energy Harvesting 11. Piezoelectrochemical Devices: Fabrication and Mechanisms 12. Piezoelectric oxides for biomedical applications 13. Piezoelectric micromanipulators 14. Advances in Piezoelectric MEMS technology 15. High-Temperature Piezoelectric applications 16. Surface Acoustic Wave (SAW) Devices (Filters and Sensors) 17. Pyroelectric Infrared (IR) Sensors