Engineering
Thermal Comfort
100%
Energy Conservation
100%
Energy Building
100%
Polyurethan
100%
Polyester Fabric
100%
Magnetron
100%
Polydimethylsiloxane
100%
Broad Band
100%
Opposite Side
100%
Thermal Conversion
100%
Nanoparticles
100%
Air Conditioning
100%
Indoor Air
100%
Irradiance
100%
Thermal Environment
100%
Emissivity
100%
Reflectance
100%
Keyphrases
Dual-mode
100%
T-shaped
100%
ZnO Whiskers
100%
Zirconium Carbide
100%
Thermal Management
100%
Janus Fabric
100%
Heating Mode
50%
Cooling Mode
50%
Photothermal Conversion
50%
Textile
25%
Energy Saving
25%
Air Conditioning
25%
Polyester Fabric
25%
Technological Challenges
25%
Thermal Environment
25%
Whisker
25%
Photothermal
25%
Visible-infrared
25%
Near-infrared
25%
Reflectivity
25%
Mid-infrared
25%
Heat Gain
25%
Indoor Environment
25%
Magnetron Sputtering
25%
Indoor Air
25%
Building Energy Consumption
25%
Carbide Particles
25%
Outdoor Environment
25%
Solar Irradiance
25%
Thermal Energy
25%
Polydimethylsiloxane
25%
Broadband Absorption
25%
Practical Requirements
25%
Human Thermal Comfort
25%
Janus
25%
High Emissivity
25%
Thermal Reduction
25%
Heating Function
25%
Cooling Function
25%
Solar Heat Shielding
25%
Polyurethane Resin
25%
Personal Thermal Management
25%
Thermal Management Technology
25%
Fabric Substrate
25%
Mode Based
25%
Material Science
ZnO
100%
Zirconium Carbide
100%
Nanoparticle
50%
Polyurethane
50%
Reflectivity
50%
Magnetron Sputtering
50%
Polyester
50%
Absorption Spectra
50%
Chemical Engineering
Photothermal Conversion
100%
Polyurethane
50%
Polyester
50%
Magnetron Sputtering
50%
Nanoparticle
50%
Polydimethylsiloxane
50%