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Ultra-Low Heat Conductivity by Configurational Entropy for Thermoelectric Conversion

ORAL

Abstract

High-entropy oxides are promising candidates for thermoelectric energy conversion due to their separately tunable thermal and electrical conductivities. Here, we examine entropy-driven heat conductivity reduction in high-entropy wolframite (Ni,Co,Mn,Fe,Zn)WO4. The Debye–Klemens–Callaway model, parameterized from first principles, is used to predict heat transport, extract phonon-interaction parameters, and quantify the influence of phonon scattering on thermal properties. This analysis highlights the pivotal role of mass disorder in enhancing phonon–defect scattering, which we identify as a primary mechanism in suppressing heat transport. Leveraging configurational entropy to control thermal conductivity thus provides a versatile framework for optimizing thermoelectric performance.

Presenters

  • Tara Karimzadeh Sabet

    Pennsylvania State University, The Pennsylvania State University, Carnegie Mellon University

Authors

  • Tara Karimzadeh Sabet

    Pennsylvania State University, The Pennsylvania State University, Carnegie Mellon University

  • Robert A Robinson

    Pennsylvania State University, The Pennsylvania State University, Penn State

  • Francisco Marques dos Vieira

    Pennsylvania State University

  • Saeed S Almishal

    Pennsylvania State University, The Pennsylvania State University

  • Sai Venkata Gayathri Ayyagari

    The Pennsylvania State University, Pennsylvania State University

  • Rowan R Katzbaer

    The Pennsylvania State University, Pennsylvania State University

  • Gabriele Di Gianluca

    University of Florida

  • Saugata Sarker

    The Pennsylvania State University, Pennsylvania State University

  • Pedro R Trinidad-Perez

    The Pennsylvania State University, Pennsylvania State University

  • John Barber

    Virginia Tech

  • Seng Huat Lee

    Pennsylvania State University

  • James Hodges

    The Pennsylvania State University, Pennsylvania State University

  • Raymond E Schaak

    The Pennsylvania State University, Pennsylvania State University

  • Vincent H Crespi

    Pennsylvania State University, The Pennsylvania State University

  • Nasim Alem

    The Pennsylvania State University, Pennsylvania State University

  • Christina M Rost

    Virginia Tech

  • Jon-Paul Maria

    Pennsylvania State University, Penn State University

  • Zhiqiang Mao

    Pennsylvania State University

  • Ismaila Dabo

    Carnegie Mellon University