Thermoelectric Properties of n -Type Bi 4 O 4 SeX 2 (X = Cl, Br).
Materials (Basel, Switzerland)(2023)
Abstract
The multiple anion superlattice BiOSeCl has been reported to exhibit extremely low thermal conductivity along the stacking -axis, making it a promising material for thermoelectric applications. In this study, we investigate the thermoelectric properties of BiOSeX (X = Cl, Br) polycrystalline ceramics with different electron concentrations by adjusting the stoichiometry. Despite optimizing the electric transport, the thermal conductivity remained ultra-low and approached the Ioffe-Regel limit at high temperatures. Notably, our findings demonstrate that non-stoichiometric tuning is a promising approach for enhancing the thermoelectric performance of BiOSeX by refining its electric transport, resulting in a figure of merit of up to 0.16 at 770 K.
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