High figure of merit in Ce-filled skutterudites

J. Fleurial, A. Borshchevsky, T. Caillat, D. Morelli, G. Meisner
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引用次数: 96

Abstract

New thermoelectric materials with superior transport properties at high temperatures have been discovered. These materials are part of the large family of skutterudites, a class of compounds which have shown a good potential for thermoelectric applications. The composition of these novel materials, called filled skutterudites, is derived from the skutterudite crystal structure and can be represented by the formula LnT/sub 4/Pn/sub 12/ (Ln=rare earth, Th; T=Fe, Rn, Os, Co, Rh, Ir; Pn=P, As, Sb). In these compounds, the empty octants of the skutterudite structure which are formed in the TPn/sub 3/ (/spl sim/T/sub 4/Pn/sub 12/) framework are filled with a rare earth element. Some of these compositions, based on CeFe/sub 4/Sb/sub 12/, have been prepared by a combination of melting and powder metallurgy techniques and have shown exceptional thermoelectric properties in the 350-700/spl deg/C temperature range. At room temperature, CeFe/sub 4/Sb/sub 12/ behaves as a p-type semimetal, but with a low thermal conductivity and surprisingly large Seebeck coefficient. These results are consistent with some recent band structure calculations on these compounds. Replacing Fe with Co in CeFe/sub 4/Sb/sub 12/ and increasing the Co:Fe atomic ratio resulted in an increase in the Seebeck coefficient values. The possibility of obtaining n-type conductivity filled skutterudites for Co:Fe values higher than 1:3 is currently being investigated. Measurements on bulk samples with a CeFe/sub 3.5/Co/sub 0.5/Sb/sub 12/ atomic composition and p-type conductivity resulted in dimensionless figure of merit ZT values of 1.4 at 600/spl deg/C.
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在满是ce的skutterudites中有很高的功绩
在高温下具有优越输运性能的新型热电材料已经被发现。这些材料是一大家族的一部分,这类化合物已显示出热电应用的良好潜力。这些新材料的组成被称为填充型角钼矿,是由角钼矿的晶体结构衍生而来的,可以用公式LnT/sub 4/Pn/sub 12/ (Ln=稀土,Th;T=Fe, Rn, Os, Co, Rh, Ir;Pn=P, As, Sb)。在这些化合物中,在TPn/sub 3/ (/spl sim/T/sub 4/Pn/sub 12/)框架中形成的方晶石结构的空八域被稀土元素填充。其中一些基于CeFe/sub 4/Sb/sub 12/的组合物是通过熔融和粉末冶金技术相结合制备的,并且在350-700/spl℃的温度范围内表现出优异的热电性能。在室温下,CeFe/sub 4/Sb/sub 12/表现为p型半金属,但具有低导热系数和惊人的大塞贝克系数。这些结果与最近对这些化合物的能带结构计算一致。用Co代替CeFe/sub 4/Sb/sub 12/中的Fe,增大Co:Fe原子比,Seebeck系数值增大。目前正在研究获得Co:Fe值高于1:3的n型电导率填充的方突石的可能性。对CeFe/sub 3.5/Co/sub 0.5/Sb/sub 12/原子组成和p型电导率的样品进行测量,在600/spl度/C时得到无量纲品质图ZT值为1.4。
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