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Broadband Dielectric Spectroscopy: Fundamentals and Applications [Pehme köide]

Edited by (Research Professor and Scientific Director, Basque Center for Materials, Applications and Nanostructures, Leioa, Spain), Edited by (Researcher, University of Minho, Braga, Portugal)
  • Formaat: Paperback / softback, 460 pages, kõrgus x laius: 276x216 mm
  • Ilmumisaeg: 01-Jun-2026
  • Kirjastus: Elsevier - Health Sciences Division
  • ISBN-10: 0443266069
  • ISBN-13: 9780443266065
  • Pehme köide
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  • Formaat: Paperback / softback, 460 pages, kõrgus x laius: 276x216 mm
  • Ilmumisaeg: 01-Jun-2026
  • Kirjastus: Elsevier - Health Sciences Division
  • ISBN-10: 0443266069
  • ISBN-13: 9780443266065
Broadband Dielectric Spectroscopy: Fundamentals and Applications offers an in-depth exploration of the current landscape of BDS, emphasizing techniques, analytical tools, devices, and materials. This comprehensive guide provides a thorough theoretical background and foundational overview, explaining experimental tests, data analysis via various formalisms, and detailed methods alongside case studies. It intertwines theory with real-world applications in advanced materials, offering a critical and pedagogical overview for researchers and engineers in materials chemistry, analytical chemistry, materials science, physics, and physical chemistry.

The book delves into intersections between BDS and other analytical techniques across industries, showcasing its use in polymers, hybrid polymers, nanocomposites, ionic liquids, and active dielectrics. It covers fabrication, quality control, sensing, and monitoring processes, making it invaluable for understanding dielectric materials used in electronics and advanced applications. The text also includes detailed methods, protocols, and case studies, demonstrating BDS's efficacy in various industries such as polymers, composites, ceramics, electronic communications, and energy.
Section I: Broadband dielectric spectroscopy Fundamentals
1. Dielectric spectroscopy: History and perspectives
2. Broadband dielectric spectroscopy equipment
3. Theory of broadband dielectric spectroscopy with parameters and formalism
4. The impact of interfaces and interphases on dielectric properties of
materials: MaxwellWagnerSillars interfacial polarization versus electrode
polarization
5. Correlation between broadband dielectric spectroscopy and other
techniques: Revealing the physics behind relaxation and diffusion in complex
materials

Section II: Broadband dielectric spectroscopy in the scope of different
materials and systems
6. Ceramic materials
7. Active dielectrics (piezoelectrics, ferroelectrics, pyroelectrics)
8. Dielectric relaxation mechanism in glass forming poly(propylene) glycols
family
9. Polymer confinement
10. Dielectric spectroscopy of ionic liquids
11. Bionanocomposites based on biodegradable polymers and biobased
nanofillers: Syntheses and dielectric properties
12. Applications of dielectric spectroscopy in electrorheological fluids
13. Broadband dielectric spectroscopy applied to investigate
lowmolecularweigh compounds confined to mesoporous silica matrices
14. Dielectric spectroscopy studies of polymer systems for pharmaceutical and
technological applications
15. Polymer dispersed liquid crystals systems
16. Broadband dielectric spectroscopy of disordered ferroics
17. Dielectric properties of watercontaining materials
18. Direct broadband dielectric spectroscopy of liquids
19. Liquid materials

Section III: Broadband dielectric spectroscopy in the context of different
applications
20. Energy systems
21. Broadband dielectric spectroscopy for reliability assessment in
integrated electronic devices
22. Broadband dielectric spectroscopy methods in microwave sensing
applications
23. Broadband dielectric spectroscopy applied to the biomedical field
24. Biological tissues: Fundamental aspects and new perspectives
25. Agriculture/food field
26. Concluding remarks and outlook
Carlos M. Costa is a Researcher at the University of Minho, Braga, Portugal. His work is focused on the development electroactive polymer based porous membranes, anode and cathode material for energy storage applications in lithium-ion batteries and printed batteries. He has also experience in the processing, characterization, and optimization of sustainable polymers and polymer nanocomposites for sensors and actuators.

Senentxu Lanceros-Méndez is Research Professor and Scientific Director at the Basque Center for Materials, Applications and Nanostructures, Leioa, Spain. His work is focused in the area of polymer-based smart materials for sensors and actuators, energy, and biomedical applications.