Synthesis and Characterization of Piezotronic Materials for Application in Strain/Stress Sensing
This book explores the new materials and the resultant new field of piezotronics. The growth and alignment of the zinc oxide nanostructures are discussed in detail because of its wide adoption in this field and its significance in optics, health, and sensing applications. The characterization of the piezotronic effect and how to distinguish it from other similar but, fundamentally different effects, like piezoresistive effect is also considered. The huge potential in the wearable and flexible devices, as well as organic materials, is further examined. The stain/stress sensing is introduced as an example of an application with piezotronic materials.

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Synthesis and Characterization of Piezotronic Materials for Application in Strain/Stress Sensing
This book explores the new materials and the resultant new field of piezotronics. The growth and alignment of the zinc oxide nanostructures are discussed in detail because of its wide adoption in this field and its significance in optics, health, and sensing applications. The characterization of the piezotronic effect and how to distinguish it from other similar but, fundamentally different effects, like piezoresistive effect is also considered. The huge potential in the wearable and flexible devices, as well as organic materials, is further examined. The stain/stress sensing is introduced as an example of an application with piezotronic materials.

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Synthesis and Characterization of Piezotronic Materials for Application in Strain/Stress Sensing

Synthesis and Characterization of Piezotronic Materials for Application in Strain/Stress Sensing

Synthesis and Characterization of Piezotronic Materials for Application in Strain/Stress Sensing

Synthesis and Characterization of Piezotronic Materials for Application in Strain/Stress Sensing

Paperback(Softcover reprint of the original 1st ed. 2018)

$109.99 
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Overview

This book explores the new materials and the resultant new field of piezotronics. The growth and alignment of the zinc oxide nanostructures are discussed in detail because of its wide adoption in this field and its significance in optics, health, and sensing applications. The characterization of the piezotronic effect and how to distinguish it from other similar but, fundamentally different effects, like piezoresistive effect is also considered. The huge potential in the wearable and flexible devices, as well as organic materials, is further examined. The stain/stress sensing is introduced as an example of an application with piezotronic materials.


Product Details

ISBN-13: 9783030099282
Publisher: Springer International Publishing
Publication date: 01/07/2019
Series: Mechanical Engineering Series
Edition description: Softcover reprint of the original 1st ed. 2018
Pages: 70
Product dimensions: 6.10(w) x 9.25(h) x (d)

About the Author

Ren Zhu is a Ph.D Candidate in Mechanical Engineering at the University of Minnesota. Rusen Yang is Assistant Professor of Mechanical Engineering at the University of Minnesota.

Table of Contents

Introduction to the piezotronic effect and sensing applications.- Growth of uniform nanowires with orientation control.- Alignment and transfer of nanowires in a spinning Langmuir film.- Piezotronic effect in a zinc oxide nanowire.- Ultra-sensitive strain/stress sensing.- Closure.-

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