Piezoelectric Materials (eBook, PDF)
Design and Applications
Redaktion: Singh, N. B.; Mahato, Dev Kumar
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Piezoelectric Materials (eBook, PDF)
Design and Applications
Redaktion: Singh, N. B.; Mahato, Dev Kumar
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This book comprises various chapters on these smart materials, which encourage more materials research efforts to develop better ferroelectric and electrostrictive ceramics for future applications. Several methods have been discussed in the chapters based on their cost and applications.
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This book comprises various chapters on these smart materials, which encourage more materials research efforts to develop better ferroelectric and electrostrictive ceramics for future applications. Several methods have been discussed in the chapters based on their cost and applications.
Dieser Download kann aus rechtlichen Gründen nur mit Rechnungsadresse in A, B, BG, CY, CZ, D, DK, EW, E, FIN, F, GR, HR, H, IRL, I, LT, L, LR, M, NL, PL, P, R, S, SLO, SK ausgeliefert werden.
Produktdetails
- Produktdetails
- Verlag: Taylor & Francis
- Seitenzahl: 718
- Erscheinungstermin: 5. Februar 2025
- Englisch
- ISBN-13: 9781040318478
- Artikelnr.: 72524091
- Verlag: Taylor & Francis
- Seitenzahl: 718
- Erscheinungstermin: 5. Februar 2025
- Englisch
- ISBN-13: 9781040318478
- Artikelnr.: 72524091
- Herstellerkennzeichnung Die Herstellerinformationen sind derzeit nicht verfügbar.
N. B. Singh is an emeritus professor at the Department of Chemistry and Biochemistry and is associated with the Research and Development Cell of Sharda University, Greater Noida, India. Formerly he was the head of the Chemistry Department and dean of the Faculty of Science of Deen Dayal Upadhyaya Gorakhpur University, Gorakhpur, India. He owns three patents and his areas of research are solid-state chemistry, materials science, cement chemistry, thermodynamics, and water purification. Dev Kumar Mahato is an associate professor and head of the Department of Physics and Department of Materials Science and Engineering, National Institute of Technology, Patna, India. He was awarded the Indian Academy of Science fellowship in 2014 and the ISCAS Smt. Mayadevi Juneja Endowment Medal in 2018. His areas of research are solid-state chemistry, materials science, cement chemistry, thermodynamics, and water purification, with a focus on multifunctional bulk and nanoceramic materials for device applications.
1. Introduction to Piezoelectricity 2. Manufacturing Methods for
Piezoelectric Ceramic Materials 3. PZT-Based Piezoelectric Materials: From
Synthesis to Functional Properties and Diverse Applications 4. Design and
Application of Piezoelectric Biomaterials 5. Perovskite Structure Materials
and Contribution to Technology Advancement 6. Piezoelectric Materials in
Sensors: An Overview 7. Transition Metal Doped Piezoelectric Materials for
Sensor Applications 8. Piezoelectric Materials in the Sound Industry 9.
Piezoelectric Energy Harvesting 10. Piezoelectric Materials and Their
Applications in Electrochemical Processes 11. Application-Oriented
Materials Development: High-Power Piezoelectric Materials 12. Future Uses
of the Piezoelectric Effect for Energy Production 13. Applications of Smart
Piezoelectric Materials for Medical Devices 14. Piezoelectric Materials and
Their Applications in Civil Engineering 15. Lead-Free Piezoelectric
Materials and Their Applications 16. Lithium Doped Lead-Free Piezoelectric
Materials 17. Virus-Based Piezoelectric Energy Generation 18. Development
in Lead-Free Perovskite Piezoelectric Bulk Materials 19. Lead-Free Hybrid
Materials for Next-Generation Piezoelectric Energy Harvesting 20. 3D
Printed Piezoelectric Energy Harvesters: Materials, 3D Printing Techniques,
and Applications
Piezoelectric Ceramic Materials 3. PZT-Based Piezoelectric Materials: From
Synthesis to Functional Properties and Diverse Applications 4. Design and
Application of Piezoelectric Biomaterials 5. Perovskite Structure Materials
and Contribution to Technology Advancement 6. Piezoelectric Materials in
Sensors: An Overview 7. Transition Metal Doped Piezoelectric Materials for
Sensor Applications 8. Piezoelectric Materials in the Sound Industry 9.
Piezoelectric Energy Harvesting 10. Piezoelectric Materials and Their
Applications in Electrochemical Processes 11. Application-Oriented
Materials Development: High-Power Piezoelectric Materials 12. Future Uses
of the Piezoelectric Effect for Energy Production 13. Applications of Smart
Piezoelectric Materials for Medical Devices 14. Piezoelectric Materials and
Their Applications in Civil Engineering 15. Lead-Free Piezoelectric
Materials and Their Applications 16. Lithium Doped Lead-Free Piezoelectric
Materials 17. Virus-Based Piezoelectric Energy Generation 18. Development
in Lead-Free Perovskite Piezoelectric Bulk Materials 19. Lead-Free Hybrid
Materials for Next-Generation Piezoelectric Energy Harvesting 20. 3D
Printed Piezoelectric Energy Harvesters: Materials, 3D Printing Techniques,
and Applications
1. Introduction to Piezoelectricity 2. Manufacturing Methods for
Piezoelectric Ceramic Materials 3. PZT-Based Piezoelectric Materials: From
Synthesis to Functional Properties and Diverse Applications 4. Design and
Application of Piezoelectric Biomaterials 5. Perovskite Structure Materials
and Contribution to Technology Advancement 6. Piezoelectric Materials in
Sensors: An Overview 7. Transition Metal Doped Piezoelectric Materials for
Sensor Applications 8. Piezoelectric Materials in the Sound Industry 9.
Piezoelectric Energy Harvesting 10. Piezoelectric Materials and Their
Applications in Electrochemical Processes 11. Application-Oriented
Materials Development: High-Power Piezoelectric Materials 12. Future Uses
of the Piezoelectric Effect for Energy Production 13. Applications of Smart
Piezoelectric Materials for Medical Devices 14. Piezoelectric Materials and
Their Applications in Civil Engineering 15. Lead-Free Piezoelectric
Materials and Their Applications 16. Lithium Doped Lead-Free Piezoelectric
Materials 17. Virus-Based Piezoelectric Energy Generation 18. Development
in Lead-Free Perovskite Piezoelectric Bulk Materials 19. Lead-Free Hybrid
Materials for Next-Generation Piezoelectric Energy Harvesting 20. 3D
Printed Piezoelectric Energy Harvesters: Materials, 3D Printing Techniques,
and Applications
Piezoelectric Ceramic Materials 3. PZT-Based Piezoelectric Materials: From
Synthesis to Functional Properties and Diverse Applications 4. Design and
Application of Piezoelectric Biomaterials 5. Perovskite Structure Materials
and Contribution to Technology Advancement 6. Piezoelectric Materials in
Sensors: An Overview 7. Transition Metal Doped Piezoelectric Materials for
Sensor Applications 8. Piezoelectric Materials in the Sound Industry 9.
Piezoelectric Energy Harvesting 10. Piezoelectric Materials and Their
Applications in Electrochemical Processes 11. Application-Oriented
Materials Development: High-Power Piezoelectric Materials 12. Future Uses
of the Piezoelectric Effect for Energy Production 13. Applications of Smart
Piezoelectric Materials for Medical Devices 14. Piezoelectric Materials and
Their Applications in Civil Engineering 15. Lead-Free Piezoelectric
Materials and Their Applications 16. Lithium Doped Lead-Free Piezoelectric
Materials 17. Virus-Based Piezoelectric Energy Generation 18. Development
in Lead-Free Perovskite Piezoelectric Bulk Materials 19. Lead-Free Hybrid
Materials for Next-Generation Piezoelectric Energy Harvesting 20. 3D
Printed Piezoelectric Energy Harvesters: Materials, 3D Printing Techniques,
and Applications