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Electro-mechanical characterization of structural supercapacitors
T. Gallagher
, D. Lamaster
,
C. Ciocanel
, C. Browder
Mechanical Engineering
Chemistry and Biochemistry
Research output
:
Chapter in Book/Report/Conference proceeding
›
Conference contribution
9
Scopus citations
Overview
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Keyphrases
Capacitance
20%
Carbon Fiber
40%
Celgard
20%
Cellulose-based
20%
Composite Materials
20%
Coupons
20%
Cyclic Voltammetry
20%
Elastic Modulus
40%
Elasticity Values
20%
Electrical Properties
100%
Electromechanical Characterization
100%
Epoxy
20%
Fiber Weave
20%
Layered Composite
20%
Leakage Resistance
60%
Mechanical Properties
80%
Polymer Blends
20%
Power Storage
20%
Property Evaluation
20%
Resistance Value
20%
Separator
40%
Separator Materials
20%
Solid Electrolyte
20%
Solid Polymer Electrolyte
40%
Specific Capacitance
40%
Structural Capacitor
20%
Structural Supercapacitor
100%
Tensile Modulus
40%
Tensile Strength
20%
Three-point Bending Test
20%
Ultimate Tensile Strength
20%
Material Science
Capacitance
75%
Capacitor
25%
Carbon Fiber
50%
Composite Material
25%
Cyclic Voltammetry
25%
Elastic Moduli
50%
Mechanical Testing
100%
Polymer Blend
25%
Polymer Electrolyte
50%
Separator Material
25%
Solid Electrolyte
25%
Supercapacitors
100%
Ultimate Tensile Strength
50%
Young's Modulus
50%