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Compact cooling devices based on giant electrocaloric effect dielectrics
Xinyu Li
, Haiming Gu
, Xiaoshi Qian
,
Qiming Zhang
Electrical Engineering
Materials Research Institute (MRI)
Research output
:
Chapter in Book/Report/Conference proceeding
›
Conference contribution
6
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Scopus citations
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Keyphrases
Dielectric
100%
Device-independent
100%
Electrocaloric Effect
100%
Cooling Device
100%
Ferroelectric Phase Transition
40%
P(VDF-TrFE)
40%
High Performance
20%
Room Temperature
20%
Electric Field (E-field)
20%
Temperature Variation
20%
Electrocaloric
20%
Working Temperature
20%
Coefficient of Performance
20%
Temperature Gradient
20%
Transition Temperature
20%
Copolymer
20%
Ferroelectric Copolymer
20%
Cooling Conditions
20%
Cooling Power
20%
Finite Volume Method
20%
Large Temperature Range
20%
Working Temperature Range
20%
Higher Coefficients
20%
Refrigerator
20%
T-20
20%
Carnot Efficiency
20%
Device Configuration
20%
Engineering
Dielectrics
100%
Temperature Range
100%
Cooling Device
100%
Electric Field
50%
Room Temperature
50%
Temperature Gradient
50%
Coefficient of Performance
50%
Temperature Change
50%
Defects
50%
Cooling Condition
50%
Cooling Power
50%
Oscillatory
50%
Finite Volume Method
50%
Carnot Efficiency
50%
Physics
Dielectrics
100%
Ferroelectricity
100%
Copolymer
66%
Electric Fields
33%
Room Temperature
33%
Temperature Gradients
33%
Coefficient of Performance
33%
Material Science
Dielectric Material
100%
Ferroelectric Material
100%
Copolymer
66%