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The maximum power factor was obtained from stoichiometric AgSbTe2 thin films.
The fiber/CNT functional hierarchical yarns showed a maximum power factor (PF) of ∼109.8 μW/mK-2 (GF-SWCNT).
A combined effect of resistivity and Seebeck coefficient leads to the maximum power factor of 1.76 mW m−1 K−2 at 673 K for Cu11.5Co0.5Sb4S13.
These NWs also demonstrated a maximum power factor of 195.8 mW/m·K2 for the Te-rich NW (d = 162 nm) at 300 K.
The maximum power factor of 19.8 μW cm−1 K−2 and the thermal conductivity of 3.54 W m−1 K−1 are obtained.
A maximum power factor of 2.35 × 10−3 W m−1 K−2 was obtained at 312 K in the sample with a nominal composition of Bi2Te3.30.
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In the first state, it was tried to obtain an arrangement with the maximum effective multiplication factor and the smallest maximum power peaking factor.
In the first state, it was tried to obtain an arrangement with the maximum effective multiplication factor and the safe maximum power peaking factor.
Also, Seebeck coefficient and maximum attainable power factor is evaluated from the manufactured n-/p-legs.
The maximum attainable power factor is 0.74 mW/m K2 at room temperature.
In this case, the maximum attainable power factor (α2·σ) is 0.74 mW K−2 cm−1.
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