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Electromechanically Active Polymers

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Cover of 'Electromechanically Active Polymers'

Table of Contents

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    Book Overview
  2. Altmetric Badge
    Chapter 1 Polymer Gels as EAPs: Fundamentals
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    Chapter 2 Polymer Gels as EAPs: Materials
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    Chapter 3 Polymer Gels as EAPs: Models
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    Chapter 4 Polymer Gels as EAPs: Applications
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    Chapter 5 Polymer Gels as EAPs: How to Start Experimenting with Them
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    Chapter 6 IPMCs as EAPs: Fundamentals
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    Chapter 7 IPMCs as EAPs: Materials
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    Chapter 8 IPMCs as EAPs: Models
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    Chapter 9 IPMCs as EAPs: Applications
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    Chapter 10 IPMCs as EAPs: How to Start Experimenting with Them
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    Chapter 11 Conducting Polymers as EAPs: Fundamentals and Materials
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    Chapter 12 Conducting Polymers as EAPs: Device Configurations
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    Chapter 13 Conducting Polymers as EAPs: Microfabrication
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    Chapter 14 Conducting Polymers as EAPs: Characterization Methods and Metrics
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    Chapter 15 Conducting Polymers as EAPs: Physical Description and Simulation
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    Chapter 16 Conducting Polymers as EAPs: Applications
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    Chapter 17 Conducting Polymers as EAPs: How to Start Experimenting with Them
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    Chapter 18 Electrochemically Driven Carbon-Based Materials as EAPs: Fundamentals and Device Configurations
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    Chapter 19 Electrothermally Driven Carbon-Based Materials as EAPs: Fundamentals and Device Configurations
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    Chapter 20 Electrochemically and Electrothermally Driven Carbon-Based Materials as EAPs: How to Start Experimenting with Them
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    Chapter 21 Piezoelectricity and Electrostriction
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    Chapter 22 Piezoelectric and Electrostrictive Polymers as EAPs: Materials
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    Chapter 23 Piezoelectric and Electrostrictive Polymers as EAPs: Devices and Applications
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    Chapter 24 Polymer Electrets and Ferroelectrets as EAPs: Fundamentals
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    Chapter 25 Polymer Electrets and Ferroelectrets as EAPs: Materials
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    Chapter 26 Polymer Electrets and Ferroelectrets as EAPs: Characterization
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    Chapter 27 Polymer Electrets and Ferroelectrets as EAPs: Devices and Applications
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    Chapter 28 Polymer Electrets and Ferroelectrets as EAPs: Models
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    Chapter 29 Polymer Electrets and Ferroelectrets as EAPs: How to Start Experimenting with Them
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    Chapter 30 Dielectric Elastomers as Electroactive Polymers (EAPs): Fundamentals
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    Chapter 31 Dielectric Elastomers (DEs) as EAPs: Materials
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    Chapter 32 Dielectric Elastomers as EAPs: Models
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    Chapter 33 Dielectric Elastomers as EAPs: Applications
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    Chapter 34 Dielectric Elastomers as EAPs: How to Start Experimenting with Them
Attention for Chapter 12: Conducting Polymers as EAPs: Device Configurations
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Chapter title
Conducting Polymers as EAPs: Device Configurations
Chapter number 12
Book title
Electromechanically Active Polymers
Published by
Springer International Publishing, August 2016
DOI 10.1007/978-3-319-31530-0_12
Book ISBNs
978-3-31-931528-7, 978-3-31-931530-0
Authors

Gursel Alici, Rahim Mutlu, Daniel Melling, Edwin W. H. Jager, Keiichi Kaneto

Editors

Federico Carpi

Mendeley readers

Mendeley readers

The data shown below were compiled from readership statistics for 2 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Unknown 2 100%

Demographic breakdown

Readers by professional status Count As %
Student > Ph. D. Student 1 50%
Unknown 1 50%
Readers by discipline Count As %
Engineering 1 50%
Unknown 1 50%