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Thermoelectric response of ZrNiSn and ZrNiPb Half-Heuslers: Applicability of semi-classical Boltzmann transport theory

机译:ZrNiSn和ZrNiPb半霍斯勒的热电响应:半经典玻尔兹曼输运理论的适用性

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We investigated the thermoelectric transport mechanism of ZrNiSn and ZrNiPb Half-Heuslers within the Boltzmann transport theory, under constant relaxation time approximation. The prediction of band structure behavior along the high symmetry Brillouin zone and density of states are used to establish relations among various transport coefficients like Seebeck coefficient, electrical conductivity, thermal conductivity and power factor which have been found to be in good agreement with the experimental results. The Seebeck coefficient variation show then-type behavior of heat carriers. The electrical and thermal conductivity show a semiconducting nature of bands along the Fermi level. The lattice part of thermal conductivity show an exponential decreasing trend along the high temperatures. Power factor variation and figure of merit show the heavier element doping of ZrNiSn results in descent increase in efficiency triggering its applicability. The overall measurements show that semi classical Boltzmann transport theory has well behaved potential in predicting the transport properties of the compounds.
机译:在恒定弛豫时间近似下,我们在玻尔兹曼输运理论内研究了ZrNiSn和ZrNiPb Half-Heuslers的热电输运机理。利用沿高对称布里渊区的能带结构行为和状态密度的预测来建立塞贝克系数,电导率,热导率和功率因数等各种输运系数之间的关系,这些关系与实验结果非常吻合。塞贝克系数的变化表明了热载体的类型行为。电导率和热导率显示沿费米能级的能带的半导体性质。导热系数的晶格部分沿高温呈指数下降趋势。功率因数变化和品质因数表明,ZrNiSn的较重元素掺杂导致效率下降,从而触发了其适用性。总体测量结果表明,半经典的玻耳兹曼输运理论在预测化合物的输运性能方面具有良好的表现潜力。

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