Ferroelectric Materials for Energy Harvesting and Storage
eBook - ePub

Ferroelectric Materials for Energy Harvesting and Storage

  1. 372 pages
  2. English
  3. ePUB (mobile friendly)
  4. Available on iOS & Android
eBook - ePub

Ferroelectric Materials for Energy Harvesting and Storage

About this book

The need to more efficiently harvest energy for electronics has spurred investigation into materials that can harvest energy from locally abundant sources. Ferroelectric Materials for Energy Harvesting and Storage is the first book to bring together fundamental mechanisms for harvesting various abundant energy sources using ferroelectric and piezoelectric materials. The authors discuss strategies of designing materials for efficiently harvesting energy sources like solar, wind, wave, temperature fluctuations, mechanical vibrations, biomechanical motion, and stray magnetic fields. In addition, concepts of the high density energy storage using ferroelectric materials is explored. Ferroelectric Materials for Energy Harvesting and Storage is appropriate for those working in materials science and engineering, physics, chemistry and electrical engineering disciplines.- Reviews wide range of energy harvesting including solar, wind, biomechanical and more- Discusses ferroelectric materials and their application to high energy density capacitors- Includes review of fundamental mechanisms of energy harvesting and energy solutions, their design and current applications, and future trends and challenges

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Yes, you can access Ferroelectric Materials for Energy Harvesting and Storage by Deepam Maurya,Abhijit Pramanick,Dwight Viehland in PDF and/or ePUB format, as well as other popular books in Technology & Engineering & Electrical Engineering & Telecommunications. We have over one million books available in our catalogue for you to explore.

Table of contents

  1. Cover image
  2. Title page
  3. Table of Contents
  4. Copyright
  5. Contributors
  6. 1: Introduction to ferroelectrics and related materials
  7. 2: Solar energy harvesting with ferroelectric materials
  8. 3: Harvesting thermal energy with ferroelectric materials
  9. 4: Leveraging size effects in flexoelectric-piezoelectric vibration energy harvesting
  10. 5: Modeling and identification of nonlinear piezoelectric material properties for energy harvesting
  11. 6: Wind energy harvesting using piezoelectric materials
  12. 7: Biomechanical energy harvesting with piezoelectric materials
  13. 8: Harvesting stray magnetic field for powering wireless sensors
  14. 9: Lead-based and lead-free ferroelectric ceramic capacitors for electrical energy storage
  15. Index