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Development of textile nanocomposites with thermal energy storage capability
Emel Onder
*
, Nihal Sarier
*
Corresponding author for this work
Department of Textile Engineering
Istanbul Kultur University
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Keyphrases
Polyacrylonitrile
100%
Textile
100%
Energy Storage Capability
100%
Thermal Energy Storage
100%
Nanoweb
50%
PEG1000
50%
Temperature Variation
25%
Polyethylene Glycol
25%
Thermal Properties
25%
Thermal Energy
25%
Energy Release
25%
Composite Structures
25%
Energy Absorption Capacity
25%
Coaxial Electrospinning
25%
Thermal Buffering
25%
Storage Capability
25%
Production Application
25%
Textile Composites
25%
Insulation Capability
25%
Release Capacity
25%
Dynamic Heat Storage
25%
Passive Insulation
25%
Dynamic Thermal Management
25%
Applications in the Field
25%
Engineering
Nanocomposite
100%
Heat Storage
100%
Temperature Change
50%
Composite Structure
50%
Coaxial Electrospinning
50%
Energy Release
50%
Thermal Energy
50%
Energy Absorption
50%
Material Science
Polyethylene Glycol
100%
Nanocomposite
100%
Electrospinning
50%
Chemical Engineering
Polyethylene Glycol
100%