13–17 Sept 2021 Virtual Conference
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Europe/Vienna timezone
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Influence of the stacking sequence on layered- chalcogenides properties: First principle investigation of Pb<sub>2</sub>Bi<sub>2</sub>Te<sub>5</sub>

16 Sept 2021, 10:50
20m
Room 2

Room 2

Oral Presentation A8. Multi-purpose materials (electronic, magnetic, thermal, sensors/actuators, network materials)- incl. A7 & A10 A8_Multi-purpose materials (electronic, magnetic, thermal, sensors/actuators, network materials)

Speaker

Mr Weiliang Ma (Aix-Marseille University)

Description

The Pb2Bi2Te5 compound has been reported in literature with two stacking sequences -Te-Pb-Te- Bi-Te-Bi-Te-Pb-Te- and -Te-Bi-Te-Pb-Te-Pb-Te-Bi-Te- labelled in this work as A and B, respectively. The electronic and the thermoelectric properties of the Pb2Bi2Te5 compound with the 2 different stacking sequences have been determined from a series of first principles calculations using density functional theory (DFT). The related compounds PbTe and Bi2Te3 have also been investigated for comparison. Different exchange-correlation functionals have been tested, w/o spin-orbit coupling, which has been found to have important effects. The elastic moduli, dielectric constants, Born effective charges, and phonon dispersion within the quasi-harmonic approximation have also been calculated and based on these calculations results, the thermal conductivity has been determined by solving the Boltzmann transport equation. Additionally, the QAIM theory was employed to explain the differences in the properties of the 2 stackings. The most interesting compound for thermoelectric applications has been found to be Pb2Bi2Te5 with the stacking B sequence. The highest zT values have been found to be 4.02 in the a-axis direction and 2.26 in the c-axis one.

Speaker Country China

Author

Mr Weiliang Ma (Aix-Marseille University)

Co-authors

Prof. Marie-Christine Record (Aix-Marseille University) Prof. Pascal Boulet (Aix-Marseille University)

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