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High Entropy Materials for Thermoelectric Applications
Wenjie Li
, Hangtian Zhu
, Lavanya Raman
, Soumya Sridar
,
Bed Poudel
Materials Science and Engineering
Research output
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Chapter in Book/Report/Conference proceeding
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Chapter
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Keyphrases
Thermoelectric Materials
100%
Waste Heat
100%
Thermoelectric Applications
100%
High-entropy Materials
100%
Entropy Engineering
100%
Emission Energy
50%
CO2 Emissions
50%
Transport Properties
50%
Energy Demand
50%
High Entropy
50%
Microstructure Effect
50%
Lattice Disorder
50%
Global Energy Consumption
50%
Future Advancements
50%
Band Structure Effects
50%
Environmentally Conscious
50%
Current Consumption
50%
Thermoelectric Performance
50%
Thermoelectric Technology
50%
Environmentally Friendly Approach
50%
Zero Emission
50%
Material Science
Thermoelectrics
100%
Thermoelectric Materials
66%
Carbon Dioxide
33%
Phase Composition
33%