Functional grade thermoelectric material n-PbTe and preparation method thereof
A technology of thermoelectric materials and functional gradients, which is applied in the direction of thermoelectric device junction lead-out materials, thermoelectric device manufacturing/processing, etc., can solve problems such as performance degradation, discontinuous change of carrier concentration, and unstable structure of power generation devices. Achieve the effects of stable performance, simple preparation method and low cost
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Embodiment 1
[0015] Weigh raw material PbTe and dopant Pbl in molar ratio 100:0.08:0.05:0.1 2 , Zr, Al, the raw material PbTe with the dopant Pbl 2 , Zr, and Al were put into a quartz tube about 100 mm in length and 10 mm in diameter, and evacuated to 2.7×10 -4 Pa sealed quartz tube. Put the quartz tube into a tube heating furnace and sinter at 1200K for 1 hour. Thereafter, the quartz tube is erected and begins to cool down. The cooling rate of the furnace is controlled by the heating program of the furnace to be 98K / hour. The temperature gradient in the sample can be made to be 5.5K / cm by selecting the position of the quartz tube in the tube heating furnace. The obtained sample is about 7cm long, and the carrier concentration in it is continuously from 2.1×10 25 m -3 Reduced to 3.3×10 24 m -3 . The effective maximum thermoelectric power output test results show that the sample is nearly 30% higher than the segmented welded FGM with the same carrier concentration composition.
Embodiment 2
[0017] Weigh the raw material PbTe and the dopant Pbl at a molar ratio of 100:0.1:0.07:0.08 2 , Zr, Al, using the same process and process conditions in Example 1, the sample is about 7cm long, and the carrier concentration in it is from 3.1×10 25 m -3 Continuously reduced to 5.3×10 24 m -3 .
Embodiment 3
[0019] Weigh raw material PbTe and dopant Pbl in molar ratio 100:0.05:0.07:0.08 2 , Zr, Al, using the same process and process conditions in Example 1, the sample is about 7cm long, and the carrier concentration in it is from 1.5×10 25 m -3 Continuously reduced to 1.6×10 24 m -3 .
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