Materials Design for Energy Harvesting and Sensor Applications
eBook - ePub

Materials Design for Energy Harvesting and Sensor Applications

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

Materials Design for Energy Harvesting and Sensor Applications

About this book

Design and fabricate devices that operate without external power

Energy harvesting converts ambient thermal, mechanical, and electromagnetic energy into electrical power for autonomous wireless devices and wearable electronics. Materials Design for Energy Harvesting and Sensor Applications reviews the properties and potential of materials central to this rapidly growing field. Edited by an international team, the book covers fabrication processes, device design, performance evaluation, and unresolved challenges across major harvesting mechanisms.

The volume examines piezoelectric, thermoelectric, magnetostrictive, and triboelectric materials across sensor, harvester, and actuator configurations. Each chapter opens with an introduction summarizing the relevant energy harvesting method before detailing state-of-the-art materials and device architectures. Coverage extends to multiscale optimal design of smart materials, offering design guidelines that connect fundamental material properties to practical application requirements.

Readers will also find:

  • Detailed discussion of additive manufacturing approaches for magnetostrictive alloys enabling complex geometries that improve energy harvesting output
  • Analysis of CMOS-based silicon nanowire thermoelectric devices and boron nitride thermal interface materials for chip-level thermal management
  • Coverage of smart composite structures with embedded electronics for structural health monitoring in aerospace and automotive sectors
  • Evaluation criteria and performance benchmarks for comparing piezoelectric, thermoelectric, magnetostrictive, and triboelectric harvesting devices
  • Design strategies for wearable electronics and wireless sensor networks operating as self-powered autonomous systems without battery replacement

Materials Design for Energy Harvesting and Sensor Applications serves materials scientists, electronics engineers, solid-state physicists, and sensor developers working on self-powered device technologies. By connecting material fabrication to device-level performance across four major harvesting mechanisms, it provides the cross-disciplinary reference these professionals require.

Information

Publisher
Wiley-VCH
Year
2026
Print ISBN
9783527353217
Edition
1
eBook ISBN
9783527844975

Table of contents

  1. Cover
  2. Table of Contents
  3. Title Page
  4. Copyright
  5. Dedication
  6. Preface
  7. Chapter 1: Recent Progress in Theory of Thermoelectric Effect: Focusing on Types I, II, and III Dirac Systems and Film-substrate Systems
  8. Chapter 2: Carbon Fiber-reinforced Polymer Piezoelectric Composites
  9. Chapter 3: Energy Harvesting Behavior of Multifunctional Layered Composites
  10. Chapter 4: High-performance, Flexible Energy-harvesting Nanogenerators and Sensors for Revolutionizing Healthcare
  11. Chapter 5: Digital Self-powered Energy Harvester Based on Vibration Estimation and Control
  12. Chapter 6: Nonlinear Finite Element Analysis and Wind Tunnel Experiment of Flutter Energy Harvesting
  13. Chapter 7: Thermoelectric Materials for Flexible Devices
  14. Chapter 8: Origami Thermoelectric Generator
  15. Chapter 9: Flexible Thermoelectric Composites for Energy Harvesting
  16. Chapter 10: Integration of Si-based Micro-thermoelectric Generator Devices
  17. Chapter 11: Design of Heat Guide Layers in Micro-thermoelectric Generators
  18. Chapter 12: Thermoelectric Thin-film Thermoelectric Generator
  19. Chapter 13: Frosting and Defrosting During Energy Harvesting from Air by Heat Pump
  20. Chapter 14: Magnetostrictive Materials and Composites for Energy-harvesting Applications
  21. Chapter 15: Mechanics of Magnetostrictive Materials and Composites
  22. Chapter 16: Additive Manufacturing of Magnetostrictive Alloys: Current Trends and Perspectives
  23. Chapter 17: Energy Harvesting with Spin–Orbit Torque: From Magnetization Switching to Emerging Spintronics
  24. Chapter 18: Triboelectric Materials for Sensor and Energy-harvesting Applications
  25. Chapter 19: Multiscale Optimal Design of Smart Materials
  26. Chapter 20: Application of Numerical Simulation on Devices using Smart Materials
  27. Chapter 21: Future Outlook
  28. Index
  29. End User License Agreement

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Yes, you can access Materials Design for Energy Harvesting and Sensor Applications by Hiroki Kurita,Yun Shi,Tianzhuo Zhan,Yu Shi in PDF and/or ePUB format, as well as other popular books in Technology & Engineering & Condensed Matter. We have over 1.5 million books available in our catalogue for you to explore.