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Enhanced Thermoelectric Properties of Polycrystalline SnSe via LaCl3 Doping

机译:LaCl3掺杂增强了多晶SnSe的热电性能

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摘要

LaCl3 doped polycrystalline SnSe was synthesized by combining mechanical alloying (MA) process with spark plasma sintering (SPS). It is found that the electrical conductivity is enhanced after doping due to the increased carrier concentration and carrier mobility, resulting in optimization of the power factor at 750 K combing with a large Seebeck coefficient over 300 Μvk−1. Meanwhile, all the samples exhibit lower thermal conductivity below 1.0 W/mK in the whole measured temperature. The lattice thermal conductivity for the doped samples was reduced, which effectively suppressed the increscent of the total thermal conductivity because of the improved electrical conductivity. As a result, a ZT value of 0.55 has been achieved for the composition of SnSe-1.0 wt % LaCl3 at 750 K, which is nearly four times higher than the undoped one and reveals that rare earth element is an effective dopant for optimization of the thermoelectric properties of SnSe.
机译:通过将机械合金化(MA)工艺与火花等离子体烧结(SPS)相结合,合成了掺LaCl3的多晶SnSe。发现掺杂后由于增加的载流子浓度和载流子迁移率而提高了电导率,从而结合了超过300 Mvk -1 的大塞贝克系数,优化了750 K时的功率因数。同时,在整个测量温度下,所有样品的导热系数均低于1.0 W / mK。掺杂样品的晶格热导率降低,由于提高了电导率,有效地抑制了总热导率的上升。结果,SnSe-1.0 wt%LaCl3在750 K下的组成的ZT值达到0.55,比未掺杂的高近四倍,这表明稀土元素是有效优化掺杂剂的有效掺杂剂。 SnSe的热电性质。

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