INIS
phonons
100%
grain boundaries
100%
thermal conductivity
100%
crystals
100%
scattering
40%
thermoelectric materials
40%
size
40%
sustainable development
20%
chemistry
20%
design
20%
carriers
20%
heat
20%
energy
20%
lead selenides
20%
morphology
20%
nanostructures
20%
reduction
20%
efficiency
20%
mean free path
20%
temperature dependence
20%
thermoelectric properties
20%
chalcogenides
20%
phase transformations
20%
shock waves
20%
engineers
20%
concentration
20%
doped materials
20%
length
20%
molecular dynamics method
20%
high pressure
20%
Engineering
Thermal Conductivity
100%
Grain Boundary
100%
Thermoelectrics
100%
Scatterer
100%
Crystal Grain
100%
Thermoelectric Materials
40%
Scattering
40%
Size Scale
20%
Efficiency
20%
Low Frequency
20%
Dopants
20%
Carrier Concentration
20%
Temperature Dependence
20%
High Pressure
20%
Mechanical Load
20%
Electrical Energy
20%
Design
20%
Length Scale
20%
Alloying
20%
Shockwave
20%
Mean Free Path
20%
Nanoscale
20%
Reduction
20%
Sustainable Development
20%
Material Science
Grain Boundary
100%
Thermal Conductivity
100%
Crystals
100%
Thermoelectrics
100%
Thermoelectric Materials
40%
Carrier Concentration
20%
Materials Design
20%
Temperature
20%
Doping (Additives)
20%
Alloying
20%
Morphology
20%
Chalcogenides
20%
Keyphrases
Thermoelectric Materials
66%
Phase Transition Path
33%
Grain Features
33%
Nanograins
33%
Thermal Conductivity Reduction
33%
Low-frequency Phonons
33%
Lattice Thermal Conductivity
33%