Ferroic Materials for Smart Systems
From Fundamentals to Device Applications
(Sprache: Englisch)
Presents state-of-the-art knowledge?from basic insights to applications?on ferroic materials-based devices This book covers the fundamental physics, fabrication methods, and applications of ferroic materials and covers bulk, thin films, and nanomaterials....
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Klappentext zu „Ferroic Materials for Smart Systems “
Presents state-of-the-art knowledge?from basic insights to applications?on ferroic materials-based devices This book covers the fundamental physics, fabrication methods, and applications of ferroic materials and covers bulk, thin films, and nanomaterials. It provides a thorough overview of smart materials and systems involving the interplays among the mechanical strain, electrical polarization, magnetization, as well as heat and light. Materials presented include ferroelectric, multiferroic, piezoelectric, electrostrictive, magnetostrictive, and shape memory materials as well as their composites. The book also introduces various sensor and transducer applications, such as ultrasonic transducers, surface acoustic wave devices, microwave devices, magneto-electric devices, infrared detectors and memories. Ferroic Materials for Smart Systems: Fabrication, Devices and Applications introduces advanced measurement and testing techniques in ferroelectrics, including FeRAM and ferroelectric tunnelling based resistive switching. It also looks at ferroelectricity in emerging materials, such as 2D materials and high-k gate dielectric material HfO2. Engineering considerations for device design and fabrication are examined, as well as applications for magnetostrictive devices. Multiferroics of materials possessing both ferromagnetic and ferroelectric orders is covered, along with ferroelastic materials represented by shape memory alloy and magnetic shape memory alloys.-Brings together physics, fabrication, and applications of ferroic materials in a coherent manner-Discusses recent advances in ferroic materials technology and applications-Covers dielectric, ferroelectric, pyroelectric and piezoelectric materials-Introduces electrostrictive materials and magnetostrictive materials-Examines shape memory alloys and magneto-shape-memory alloys-Introduces devices based on the integration of ferroelectric and ferromagnetic materials such as multiferroic memory device and ME coupling
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device for sensor applicationsFerroic Materials for Smart Systems: Fabrication, Devices and Applications will appeal to a wide variety of researchers and developers in physics, materials science and engineering.
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Inhaltsverzeichnis zu „Ferroic Materials for Smart Systems “
1. GENERAL INTRODUCTION: SMART MATERIALS, SENSORS and ACTUATORS1.1 Smart System1.2 Device Application of Ferroelectric Materials1.3 Device Application of Ferromagnetic Materials1.4 Ferroelastic Material and Device Application1.5 Scope of This Book2. INTRODUCTION to FERROELECTRICS2.1 What is Ferroelectrics?2.2 Origin of Ferroelectrics2.3 Theory of Ferroelectric Phase Transition2.4 Ferroelectric Domains and Domain Switching2.5 Ferroelectric Materials2.6 Ferroelectric Domain and Phase Field Calculation3. DEVICE APPLICATIONS of FERROELECTRICS3.1 Ferroelectric Random Access Memory3.2 Ferroelectric Tunneling Non-Volatile Memory3.3 Pyroelectric Effect and Infrared Sensor Application3.4 Application in Microwave Device3.5 Ferroelectric Photovoltaics3.6 Electrocaloric Effect4. FERROELECTRIC CHARACTERIZATIONS4.1 P-E Loop Measurement4.2 Temperature-Dependent Dielectric Permittivity Measurement4.3 Piezoresponse Force Microscopy (PFM)4.4 Structural Characterization4.5 Domain Imaging and Polarization Mapping by Transmission Electron Microscopy 5. RECENT ADVANCES in FERROELECTRIC RESEARCH5.1 Size Limit of Ferroelectricity5.2 Ferroelectricity in Emerging 2D Materials5.3 Ferroelectric Vortex5.4 Molecular Ferroelectrics5.5 Ferroelectricity in HfO2 and ZrO2 Fluorite-oxide Thin Films5.6 Ferroic Properties in Hybrid Perovskites6. PIEZOELECTRIC EFFECT - BASIC THEORY6.1 Piezoelectric Constants Measurement6.2 Equivalent Circuit6.3 Characterization of Piezoelectric Resonator Based on a Resonance Technique7. PIEZOELECTRIC DEVICES7.1 Piezoelectric Ultrasonic Transducers7.2 Ultrasonic Motor7.3 Surface Acoustics Wave Devices7.4 Lead-free Piezoelectric Materials8. FERROMAGNETICS - FROM MATERIAL to DEVICE8.1 General Introduction to Ferromagnetics8.2 Ferromagnetic Phase Transition- Landau Free-energy Theory8.3 Domain and Domain Wall8.4 Magnetoresistance Effect and Device8.5 Magnetostrictive Effect and Device Applications8.6 Characterizations of Ferromagnetism8.7 Hall Effect9. MULTIFERROICS: SINGLE
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PHASE and COMPOSITES9.1 Introduction on Multiferroic9.2 Magnetoelectric Effect9.3 Why are There So Few Magnetic Ferroelectrics?9.4 Single Phase Multiferroic Materials9.5 ME Composite Materials9.6 Modelling the Interfacial Coupling in Multilayered ME Thin Film10. DEVICE APPLICATION of MULTIFERROICS10.1 ME Composite Devices10.2 Memory Devices Based on Multiferroic Thin Films10.3 Memory Devices Based on Multiferroic Tunneling11. FERROELASTICITY and SHAPE MEMORY ALLOY11.1 Shape Memory Alloys11.2 Ferromagnetic Shape Memory Alloys11.3 Device Application of MSA
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Autoren-Porträt von Jiyan Dai
Jiyan Dai, PhD, is Professor in the Department of Applied Physics at The Hong Kong Polytechnic University, China. His research interests include nanomaterials fabrication and application with an emphasis on functional oxide thin films and devices. He has published more than 200 peer-reviewed journal papers and five book chapters.
Bibliographische Angaben
- Autor: Jiyan Dai
- 2020, X, 252 Seiten, 69 farbige Abbildungen, 152 Schwarz-Weiss-Abbildungen, Masse: 17,6 x 25,1 cm, Gebunden, Englisch
- Verlag: Wiley-VCH
- ISBN-10: 3527344764
- ISBN-13: 9783527344765
- Erscheinungsdatum: 19.02.2020
Sprache:
Englisch
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