Thermoelectricity has the potential to address global energy crises and climate changes by converting waste heat into electricity. However, low efficiency has hindered their commercialization, with a figure of merit (ZT) of 3-4 needed for practical a
Section: Physical Sciences (Research Project)
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Designing high
Designing high efficiency thermoelectrics from high entropy half heuster alloys using defects & disorder engineering
Research Project › Physical Sciences
Search of
Search of new semiconducting Heusler alloys for high temperature thermoelectric application
Research Project › Physical Sciences
Electron-Phonon Coupling
Electron-Phonon Coupling Effects on Thermoelectric Performance of High Entropy Alloys Based on Heusler Compounds: First-principles Insight
Research Project › Physical Sciences
Electron-Phonon Coupling
Electron-Phonon Coupling Effects on Thermoelectric Performance of High Entropy Alloys Based on Heusler Compounds: First-principles Insight
Research Project › Physical Sciences
Exploring novel
Exploring novel topological phases in magnetic Heusler alloys for future spintronic technologies through first principles calculations
Research Project › Physical Sciences