首页> 外文会议> >Thermoelectric properties of half-Heusler phases: ErNi/sub 1-x/Cu/sub x/Sb, YNi/sub 1-x/Cu/sub x/Sb and Zr/sub x/Hf/sub y/Ti/sub z/NiSn
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Thermoelectric properties of half-Heusler phases: ErNi/sub 1-x/Cu/sub x/Sb, YNi/sub 1-x/Cu/sub x/Sb and Zr/sub x/Hf/sub y/Ti/sub z/NiSn

机译:半霍斯勒相的热电性质:ErNi / sub 1-x / Cu / sub x / Sb,YNi / sub 1-x / Cu / sub x / Sb和Zr / sub x / Hf / sub y / Ti / sub z /镍锡

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Our previous investigations on the half-Heusler phases, rare earth nickel antimonides and zirconium nickel stannides, have indicated that ErNiSb can be comparably promising to ZrNiSn for further thermoelectric investigations. These compounds crystallize in the cubic MgAgAs structure type and possess Seebeck coefficients up to +160 /spl mu/V/K and -355 /spl mu/V/K, respectively. Their thermal conductivities are approximately 60 mW/cm.K with their electrical conductivity curves resembling a semiconductor (350 S/cm and 250 S/cm for ErNiSb and ZrNiSn, respectively). The rare earth nickel antimonide compounds are synthesized as p-type materials, however, a careful analysis of their electronic band structures point out that n-type materials will possess larger effective masses and therefore larger Seebeck coefficients. Consequently, in order to improve the transport properties of these compounds and to achieve n-type materials, we investigated some of their solid solutions obtained by partial substitution of the transition metal element. Here, we report the transport properties of a wide range of solid solution members corresponding to the formula ErNi/sub 1-x/Cu/sub x/Sb, YNi/sub 1-x/Cu/sub x/Sb and Zr/sub x/Hf/sub y/Ti/sub z/NiSn (x+y+z=1).
机译:我们先前对半赫斯勒相,稀土镍锑化物和锆镍锡化物的研究表明,ErNiSb可以与ZrNiSn相比,有望用于进一步的热电研究。这些化合物以立方MgAgAs结构类型结晶,并且塞贝克系数分别高达+160 / spl mu / V / K和-355 / spl mu / V / K。它们的热导率约为60 mW / cm.K,其电导率曲线类似于半导体(ErNiSb和ZrNiSn分别为350 S / cm和250 S / cm)。稀土锑酸镍化合物是作为p型材料合成的,但是,对其电子能带结构的仔细分析指出,n型材料将具有较大的有效质量,因此具有较大的塞贝克系数。因此,为了改善这些化合物的传输性能并获得n型材料,我们研究了通过过渡金属元素的部分取代而获得的一些固溶体。在这里,我们报告了对应于公式ErNi / sub 1-x / Cu / sub x / Sb,YNi / sub 1-x / Cu / sub x / Sb和Zr / sub的各种固溶体成员的传输性质x / Hf / sub y / Ti / sub z / NiSn(x + y + z = 1)。

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