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      Electronic Instability and Anharmonicity in SnSe

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          Abstract

          The binary compound SnSe exhibits record high thermoelectric performance, largely because of its very low thermal conductivity. The origin of the strong phonon anharmonicity leading to the low thermal conductivity of SnSe is investigated through first-principles calculations of the electronic structure and phonons. It is shown that a Jahn-Teller instability of the electronic structure is responsible for the high-temperature lattice distortion between the Cmcm and Pnma phases. The coupling of phonon modes and the phase transition mechanism are elucidated, emphasizing the connection with hybrid improper ferroelectrics. This coupled instability of electronic orbitals and lattice dynamics is the origin of the strong anharmonicity causing the ultralow thermal conductivity in SnSe. Exploiting such bonding instabilities to generate strong anharmonicity may provide a new rational to design efficient thermoelectric materials.

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          Author and article information

          Journal
          2016-04-24
          2016-05-03
          Article
          1604.07077
          52b97e0e-fda0-4a04-a77d-70b5b8d0bad8

          http://arxiv.org/licenses/nonexclusive-distrib/1.0/

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          cond-mat.mtrl-sci

          Condensed matter
          Condensed matter

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