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Flattening of the acoustic phonon branches in the clathrate Ba<sub>8</sub>Ga<sub>16</sub>Ge<sub>30</sub>

ORAL

Abstract

In the search for high-performance thermoelectric materials, phonon-glass electron crystal (PGEC) materials such as clathrates have drawn attention due to having both glass-like low phonon thermal conductivity and crystal-like high electrical conductivity [1]. Ba8Ga16Ge30 (BGG) has a guest Ba atom trapped inside Ga/Ge cage structures is known for avoided crossings between acoustic phonons and the flat guest atom modes proposed to be the source of the low lattice thermal conductivity [2,3]. Ga/Ge site disorder with Ga and Ge exchanging places in different unit cells has also been reported [4]. We used time-of-flight neutron scattering to measure the complete phonon spectrum in a large single crystal of BGG and compared these results with predictions of density functional theory. Calculations assuming the structure where Ga/Ge atoms occupy their nominal sites, as well as a disordered configuration showed that the latter agrees much better with the data. Disorder strongly reduces phonon group velocities despite nearly identical masses of Ga and Ge, which accounts for exceptionally low thermal conductivity. Our work points at a new path towards optimizing thermoelectrics.

References:

[1] Slack, G. A. CRC Handbook of Thermoelectrics Vol. 407 (1995).

[2] J. Dong et al., Phys. Rev. Lett. 86, 2361–2364 (2001).

[3] M. Christensen et al., Nature Materials 7, pages 811–815 (2008).

[4] A. Bentien et al., Phys. Rev. B 71, 144107 (2005).

Presenters

  • Susmita Roy

    University of Colorado, Boulder

Authors

  • Susmita Roy

    University of Colorado, Boulder

  • Tyler C Sterling

    University of Colorado, Boulder

  • Dan Parshall

    University of Colorado, Boulder

  • Eric Toberer

    Dept. of Physics, Colorado School of Mines, Golden, Colorado 80401, USA

  • Mogens Christensen

    Center for Energy Materials, Department of Chemistry and Interdisciplinary Nanoscience Center INANO, University of Aarhus

  • Devashibhai T Adroja

    ISIS Facility, STFC, Rutherford Appleton Laboratory, Chilton, Oxfordshire OX11 0QX, United Kingdom Funding, STFC Rutherford Appleton Laboratory

  • Dmitry Reznik

    Physics, University of Colorado, Boulder, University of Colorado, Boulder