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Enhanced electromechanical responses of IPCNC Actuators
Yang Liu
, Sheng Liu
, Hulya Cebeci
, Roberto G. De Villoria
, Jun Hong Lin
, Brian L. Wardle
,
Q. M. Zhang
Electrical Engineering
Materials Research Institute (MRI)
Research output
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Chapter in Book/Report/Conference proceeding
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Keyphrases
Ionic Polymer
100%
Actuator
100%
Electromechanical Response
100%
Vertically Aligned Carbon Nanotubes (VACNTs)
100%
Composite Actuator
100%
Polymer Conductors
100%
Network Composites
100%
Ultra-high
50%
High Performance
25%
Volume Fraction
25%
Anisotropic Elasticity
25%
Electromechanical Performance
25%
Vertical Strain
25%
Carbon Nanotube-polymer Composites
25%
High Volume Fraction
25%
Composite Electrode
25%
Electrical Conduction
25%
Electrode Morphology
25%
Actuation Speed
25%
Conduction Resistance
25%
Ionic Polymer Actuators
25%
Actuation Strain
25%
Fast Actuation
25%
Material Science
Actuator
100%
Conductor
100%
Composite Material
100%
Carbon Nanotube
66%
Volume Fraction
33%
Elastic Property
16%
Polymer Composite
16%
Engineering
Actuator
100%
Carbon Nanotube
66%
Experimental Result
33%
Actuation
33%
Anisotropic
16%
High Volume Fraction
16%
Electrical Conductivity
16%
Chemical Engineering
Carbon Nanotube
100%