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Enhanced atomic ordering leads to high thermoelectric performance in AgSbTe2

  • Subhajit Roychowdhury
  • , Tanmoy Ghosh
  • , Raagya Arora
  • , Manisha Samanta
  • , Lin Xie
  • , Niraj Kumar Singh
  • , Ajay Soni
  • , Jiaqing He
  • , Umesh V. Waghmare
  • , Kanishka Biswas

Research output: Contribution to journalArticlepeer-review

607 Scopus citations

Abstract

High thermoelectric performance is generally achieved through either electronic structure modulations or phonon scattering enhancements, which often counteract each other. A leap in performance requires innovative strategies that simultaneously optimize electronic and phonon transports. We demonstrate high thermoelectric performance with a near room-temperature figure of merit, ZT ~ 1.5, and a maximum ZT ~ 2.6 at 573 kelvin, by optimizing atomic disorder in cadmium-doped polycrystalline silver antimony telluride (AgSbTe2). Cadmium doping in AgSbTe2 enhances cationic ordering, which simultaneously improves electronic properties by tuning disorder-induced localization of electronic states and reduces lattice thermal conductivity through spontaneous formation of nanoscale (~2 to 4 nanometers) superstructures and coupling of soft vibrations localized within ~1 nanometer around cadmium sites with local strain modulation. The strategy is applicable to most other thermoelectric materials that exhibit inherent atomic disorder.
Original languageEnglish
Pages (from-to)722-727
Number of pages6
JournalScience
Volume371
Issue number6530
DOIs
StatePublished - Feb 12 2021
Externally publishedYes

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