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Dielectric Materials : Introduction, Research and Applications.

By: Contributor(s): Material type: TextTextSeries: Materials Science and Technologies SeriesPublisher: New York : Nova Science Publishers, Incorporated, 2009Copyright date: ©2009Edition: 1st edDescription: 1 online resource (164 pages)Content type:
  • text
Media type:
  • computer
Carrier type:
  • online resource
ISBN:
  • 9781617283673
Subject(s): Genre/Form: Additional physical formats: Print version:: Dielectric MaterialsDDC classification:
  • 537/.24
LOC classification:
  • QC585.C53 2009
Online resources:
Contents:
Intro -- Library of Congress Cataloging-in-Publication Data -- Contents -- Preface -- Acknowledgement -- Chapter 1 -- Introduction -- Chapter 2 -- Classification of Dielectrics -- (A) Non-Ferroelectric Materials -- (B) Ferroelectric Materials -- Chapter 3 -- History -- 3.1. Ferroelectricity -- 3.2. Pyroelectricity -- 3.3. Piezoelectricity -- 3.4. Multiferroicity -- Chapter 4 -- Dielectric Response of Materials -- Chapter 5 -- Dielectric Spectroscopy -- 5.1. Phase Transition -- 5.2. Diffuse Phase Transition -- 5.3. Dielectric Relaxation -- Chapter 6 -- Synthesis of Different Dielectric Materials -- 6.1. Single Crystal -- 6.2. Ceramics -- 1) Mechanical Methods -- 2) Chemical Methods -- 6.3. Thin Film -- 6.4. Polymers -- 6.4.1. Electrical Properties of Polymers -- 6.4.2. Different Types of Dielectric Polymers -- 6.5. Liquid Crystals -- Thermotropic LCs -- Lyotropic -- Metallotropic -- 6.5.1. Ferroelectric Liquid Crystals -- 6.5.2. Dielectric Spectroscopy of Liquid Crystal -- Chapter 7 -- Characterization Techniques -- 7.1. Thermal Analysis -- 7.1.1. Differential Thermal Analysis (DTA) -- 7.1.2. Thermo Gravimetric Analysis (TGA) -- 7.3. Structural and Microstructural Analysis -- 7.3.1. X-ray Diffraction Study (XRD) -- 7.3.2. Scanning Electron Microscopy (SEM) -- 7.3.3. Transmission Electron Microscopy (TEM) -- 7.3.4. FTIR Spectroscopy -- 7.3.5. Raman Spectroscopy -- 7.4. Dielectric Study -- 7.4.1. Spontaneous Polarization Study -- 7.4.2. Pyroelectric Studies -- 7.4.3. Piezoelectric Study -- 7.5. Electrical Property -- 7.5.1. Complex Impedance Spectroscopy -- 7.5.2. Electrical Conductivity Study -- ac Conductivity -- dc Conductivity -- Chapter 8 -- Research on some Dielectric Materials -- 8.1. Hydrogen-Bonded Materials -- 8.1.1. KH2PO4 -- 8.1.2. PbHPO4 -- 8.1.3. CsH2PO4 -- 8.2. Oxide Ferroelectrics -- 8.2.1. Perovskite Structures.
(a) Charge Neutrality -- (b) Goldschmidt Tolerance Factor -- 8.2.2. Tungsten Bronze Structure -- 8.2.3. Layered Structure Oxides and Complex Compounds -- 8.2.4. Pyrochlore Oxides -- 8.2.4. Other Dielectrics -- Chapter 9 -- Complex Impedance Spectroscopy of Dielectric Materials -- Chapter 10 -- Multiferroic Property of Dielectric Materials -- Chapter 11 -- Applications -- 11.1. Dielectric Devices -- 11.2. Piezoelectric Devices -- 11.3. Pyroelectric Devices -- 11.4. Ferroelectric Devices -- 11.5. Multiferroic Devices -- 11.6. Other Applications -- Chapter 12 -- Conclusion -- References -- Index -- Blank Page.
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Intro -- Library of Congress Cataloging-in-Publication Data -- Contents -- Preface -- Acknowledgement -- Chapter 1 -- Introduction -- Chapter 2 -- Classification of Dielectrics -- (A) Non-Ferroelectric Materials -- (B) Ferroelectric Materials -- Chapter 3 -- History -- 3.1. Ferroelectricity -- 3.2. Pyroelectricity -- 3.3. Piezoelectricity -- 3.4. Multiferroicity -- Chapter 4 -- Dielectric Response of Materials -- Chapter 5 -- Dielectric Spectroscopy -- 5.1. Phase Transition -- 5.2. Diffuse Phase Transition -- 5.3. Dielectric Relaxation -- Chapter 6 -- Synthesis of Different Dielectric Materials -- 6.1. Single Crystal -- 6.2. Ceramics -- 1) Mechanical Methods -- 2) Chemical Methods -- 6.3. Thin Film -- 6.4. Polymers -- 6.4.1. Electrical Properties of Polymers -- 6.4.2. Different Types of Dielectric Polymers -- 6.5. Liquid Crystals -- Thermotropic LCs -- Lyotropic -- Metallotropic -- 6.5.1. Ferroelectric Liquid Crystals -- 6.5.2. Dielectric Spectroscopy of Liquid Crystal -- Chapter 7 -- Characterization Techniques -- 7.1. Thermal Analysis -- 7.1.1. Differential Thermal Analysis (DTA) -- 7.1.2. Thermo Gravimetric Analysis (TGA) -- 7.3. Structural and Microstructural Analysis -- 7.3.1. X-ray Diffraction Study (XRD) -- 7.3.2. Scanning Electron Microscopy (SEM) -- 7.3.3. Transmission Electron Microscopy (TEM) -- 7.3.4. FTIR Spectroscopy -- 7.3.5. Raman Spectroscopy -- 7.4. Dielectric Study -- 7.4.1. Spontaneous Polarization Study -- 7.4.2. Pyroelectric Studies -- 7.4.3. Piezoelectric Study -- 7.5. Electrical Property -- 7.5.1. Complex Impedance Spectroscopy -- 7.5.2. Electrical Conductivity Study -- ac Conductivity -- dc Conductivity -- Chapter 8 -- Research on some Dielectric Materials -- 8.1. Hydrogen-Bonded Materials -- 8.1.1. KH2PO4 -- 8.1.2. PbHPO4 -- 8.1.3. CsH2PO4 -- 8.2. Oxide Ferroelectrics -- 8.2.1. Perovskite Structures.

(a) Charge Neutrality -- (b) Goldschmidt Tolerance Factor -- 8.2.2. Tungsten Bronze Structure -- 8.2.3. Layered Structure Oxides and Complex Compounds -- 8.2.4. Pyrochlore Oxides -- 8.2.4. Other Dielectrics -- Chapter 9 -- Complex Impedance Spectroscopy of Dielectric Materials -- Chapter 10 -- Multiferroic Property of Dielectric Materials -- Chapter 11 -- Applications -- 11.1. Dielectric Devices -- 11.2. Piezoelectric Devices -- 11.3. Pyroelectric Devices -- 11.4. Ferroelectric Devices -- 11.5. Multiferroic Devices -- 11.6. Other Applications -- Chapter 12 -- Conclusion -- References -- Index -- Blank Page.

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Electronic reproduction. Ann Arbor, Michigan : ProQuest Ebook Central, 2024. Available via World Wide Web. Access may be limited to ProQuest Ebook Central affiliated libraries.

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