Piezoresistive Effect of p-Type Single Crystalline 3C-SiC
eBook - PDF

Piezoresistive Effect of p-Type Single Crystalline 3C-SiC

Silicon Carbide Mechanical Sensors for Harsh Environments

  1. 156 pages
  2. English
  3. PDF
  4. Available on iOS & Android
eBook - PDF

Piezoresistive Effect of p-Type Single Crystalline 3C-SiC

Silicon Carbide Mechanical Sensors for Harsh Environments

About this book

This book addresses the piezoresistance in p-type 3C-SiC, which it investigates using experimental characterization and theoretical analysis. The gauge factor, the piezoresistive coefficients in two-terminal and four-terminal resistors, the comparison between single crystalline and nanocrystalline SiC, along with the temperature dependence of the piezoresistive effect in p-type 3C-SiC are also discussed. 

Silicon carbide (SiC) is an excellent material for electronic devices operating at high temperatures, thanks to its large energy band gap, superior mechanical properties and extreme chemical inertness. Among the numerous polytypes of SiC, the cubic single crystal, which is also well known as 3C-SiC, is the most promising platform for microelectromechanical (MEMS) applications, as it can be epitaxially grown on an Si substrate with diameters of up to several hundred millimeters. This feature makes 3C-SiC compatible with the conventional Si-based micro/nano processing and also cuts down the cost of SiC wafers. 

The investigation into the piezoresistive effect in 3C-SiC is of significant interest for the development of mechanical transducers such as pressure sensors and strain sensors used for controlling combustion and deep well drilling. Although a number of studies have focused on the piezoresistive effect in n-type 3C-SiC, 4H-SiC and 6H-SiC, comparatively little attention has been paid to piezoresistance in p-type 3C-SiC. 

In addition, the book investigates the piezoresistive effect of top-down fabricated SiC nanowires, revealing a high degree of sensitivity in nanowires employing an innovative nano strain-amplifier. The large gauge factors of the p-type 3C-SiC at both room temperature and high temperatures found here indicate that this polytype could be suitable for the development of mechanical sensing devices operating in harsh environments with high temperatures.

Information

Publisher
Springer
Year
2017
Print ISBN
9783319555430
eBook ISBN
9783319555447

Table of contents

  1. Supervisor’s Foreword
  2. Abstract
  3. Acknowledgements
  4. Contents
  5. Abbreviations
  6. Physical Constants
  7. Symbols
  8. 1 Introduction and Literature Review
  9. 2 Theory of the Piezoresistive Effect in p-Type 3C-SiC
  10. 3 3C-SiC Film Growth and Sample Preparation
  11. 4 Characterization of the Piezoresistive Effect in p-Type Single Crystalline 3C-SiC
  12. 5 The Piezoresistive Effect in p-Type Nanocrystalline SiC
  13. 6 The Piezoresistive Effect of Top Down p-Type 3C-SiC Nanowires
  14. 7 Conclusion and Perspectives
  15. Appendix A Process Flow of the SiC/Si Beam
  16. Appendix B Estimation of the Error Between the Simulation and the Actual Results of the Strain in 3C-SiC Resistor
  17. Appendix C Estimation of the Piezoresistance in 3C-SiC Using the PZR Coefficients
  18. Appendix D Estimation of the GF of 3C-SiC Films with Different Thicknesses
  19. Appendix E In Situ Characterization of the Strain Effect on p-Type 3C-SiC at High Temperatures
  20. Appendix F Orientation Dependence of the Piezoresistive Effect in p-Type 3C-SiC Four-Terminal Resistors
  21. About the Author

Trusted by 375,005 students

Access to over 1.5 million titles for a fair monthly price.

Study more efficiently using our study tools.

Frequently asked questions

Yes, you can cancel anytime from the Subscription tab in your account settings on the Perlego website. Your subscription will stay active until the end of your current billing period. Learn how to cancel your subscription
No, books cannot be downloaded as external files, such as PDFs, for use outside of Perlego. However, you can download books within the Perlego app for offline reading on mobile or tablet. Learn how to download books offline
Perlego offers two plans: Essential and Complete
  • Essential is ideal for learners and professionals who enjoy exploring a wide range of subjects. Access the Essential Library with 800,000+ trusted titles and best-sellers across business, personal growth, and the humanities. Includes unlimited reading time and Standard Read Aloud voice.
  • Complete: Perfect for advanced learners and researchers needing full, unrestricted access. Unlock 1.5M+ books across hundreds of subjects, including academic and specialized titles. The Complete Plan also includes advanced features like Premium Read Aloud and Research Assistant.
Both plans are available with monthly, semester, or annual billing cycles.
We are an online textbook subscription service, where you can get access to an entire online library for less than the price of a single book per month. With over 1.5 million books across 990+ topics, we’ve got you covered! Learn about our mission
Look out for the read-aloud symbol on your next book to see if you can listen to it. The read-aloud tool reads text aloud for you, highlighting the text as it is being read. You can pause it, speed it up and slow it down. Learn more about Read Aloud
Yes! You can use the Perlego app on both iOS and Android devices to read anytime, anywhere — even offline. Perfect for commutes or when you’re on the go.
Please note we cannot support devices running on iOS 13 and Android 7 or earlier. Learn more about using the app
Yes, you can access Piezoresistive Effect of p-Type Single Crystalline 3C-SiC by Hoang-Phuong Phan 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.