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Dielectric properties of a printed sol-gel matrix composite
Tobias Lehnert
, Petra Herbeck-Engel
, Jens Adam
, Gabi Klein
, Terho Kololuoma
, Michael Veith
*
*
Corresponding author for this work
INM – Leibniz-Institut für Neue Materialien gGmbH
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Article
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Scientific
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peer-review
10
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INIS
low temperature
100%
films
100%
particles
100%
matrices
100%
sol-gel process
100%
dielectric constant
100%
dielectric properties
100%
ferroelectric materials
100%
applications
50%
optimization
50%
substrates
50%
precursor
50%
chemistry
50%
silver
50%
electrodes
50%
dielectrics
50%
capacitors
50%
composite materials
50%
permittivity
50%
organic polymers
50%
dissipation factor
50%
Keyphrases
Sol-gel
100%
Dielectric Properties
100%
Matrix Composites
100%
Sol-gel Matrix
100%
Low Temperature
66%
Gravure
33%
Composite Film
33%
Printed Electronics
33%
Dielectric Constant
33%
Functional Materials
33%
High Dielectric Constant
33%
Barium Titanate
33%
High-permittivity
33%
Organic Polymer
33%
Dissipation Factor
33%
Printed Capacitor
33%
Cured Films
33%
Functional Particles
33%
Dielectric Composites
33%
Printed Silver Electrodes
33%
Ferroelectric Response
33%
Flexible Organic Substrates
33%
Material Science
Sol-Gel
100%
Dielectric Property
100%
Permittivity
100%
Matrix Composite
100%
Ferroelectric Material
66%
Composite Films
33%
Organic Polymer
33%
Capacitor
33%
Film
33%
Composite Material
33%
Silver
33%
Functional Material
33%
Dielectric Material
33%
Engineering
Dielectrics
100%
Low-Temperature
50%
Printed Electronics
25%
High Dielectric Constant
25%
Illustrates
25%
Dissipation Factor
25%
Solgel Chemistry
25%
Composite Material
25%