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Glass ceramic dielectrics: Energy storage and breakdown
Badri Rangarajan
, Thomas R. Shrout
,
Michael T. Lanagan
Materials Research Institute (MRI)
Engineering Science and Mechanics
Research output
:
Chapter in Book/Report/Conference proceeding
›
Conference contribution
7
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Scopus citations
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Keyphrases
Ceramic Dielectrics
100%
Glass-ceramics
100%
Dielectric Energy Storage
100%
Energy Breakdown
100%
Silicate
60%
Barium Titanate
60%
Permittivity
40%
Crystalline Phase
20%
Crystallization
20%
Low Loss
20%
Perovskite
20%
Heat Treatment
20%
High Temperature
20%
Pyrochlore
20%
High-permittivity
20%
Dielectric
20%
Crystallization Kinetics
20%
Treatment Schedule
20%
Polymer Nanocomposites
20%
High Energy Density Capacitor
20%
High Breakdown Strength
20%
High Resistivity
20%
Automotive Vehicles
20%
Motivational Factors
20%
Defibrillator
20%
Silicate Glass
20%
Low Permittivity
20%
Glass Forming Ability
20%
Tungsten Bronze
20%
Glass Matrix
20%
Excellent Stability
20%
Thin Samples
20%
Material Science
Glass Ceramics
100%
Dielectric Ceramics
100%
Permittivity
66%
Barium Titanate
50%
Silicate
50%
Silicate Glass
33%
Sodium Niobate
33%
Nanocomposite
33%
Barium
16%
Heat Treatment
16%
Capacitor
16%
Electrical Resistivity
16%
Crystallization Kinetics
16%
Tungsten
16%
Defibrillator
16%
Surface (Surface Science)
16%
Dielectric Material
16%
High Energy Density
16%