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Three-dimensional TIs including Sb2Te3, Bi2Se3, and Bi2Te3 are also excellent thermoelectrics, which have been intensively investigated for optimized thermoelectric performance in the recent decades [7, 8].
Nanowires have better thermoelectric performance than their bulk counterparts.
Yet its thermoelectric performance could still be improved.
This report clarified that heating over 400°C will debase the thermoelectric performance of lead tellurides.
Typically, the thermoelectric performance strongly depends on the particle morphology and density.
Thus, alloying Si with a good metal could lead to the improved thermoelectric performance.
Moreover, their thermoelectric performance can be significantly enhanced via isotope substitution, isoelectronic impurities, and hydrogen adsorption.
All the layered cobalt oxides show good thermoelectric performance at high temperatures.
This would eventually optimize the search for effective additives to enhance overall thermoelectric performance.
However, P3AT/inorganic conductive composites exhibit relatively poor thermoelectric performance because of their low electrical conductivity.
The effects of TiB2 addition on sintering behavior and control of thermoelectric performance were discussed.
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