稀土掺杂对过渡金属五碲化物HfTe/ sub5 /热电输运性质的影响

N. Lowhorn, T. Tritt, E. Abbott, J. Kolis
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引用次数: 2

摘要

过渡金属五碲化物HfTe/sub - 5/和ZrTe/sub - 5/具有较高的热电功率因子和异常的电输运行为。除了HfTe/sub 5/在75 K左右和ZrTe/sub 5/在145 K左右有一个大的电阻峰作为温度的函数外,电阻率的温度依赖性是半金属的。在与这个峰值相对应的温度下,当热功率从较大的正值移动到较大的负值时,热功率穿过零。以往的研究表明,掺杂对异常输运的影响是深刻而多样的。在本研究中,我们研究了稀土元素对HfTe/ sub5 /的电阻率、热功率和磁阻的影响。随着原子序数的增加,稀土元素的掺入抑制了母体化合物的异常输运行为和较大的磁阻效应。稀土掺杂也导致热电功率因数比先前研究的五碲化物增强。对于标称Hf/sub 0.75/Nd/sub 0.25/Te/sub 5/和Hf/sub 0.75/Sm/sub 0.25/Te/sub 5/,观察到的值比常用热电材料Bi/sub 2/Te/sub 3/的值大2倍以上。
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Effect of rare earth doping on the thermoelectric and electrical transport properties of the transition metal pentatelluride HfTe/sub 5/
The transition metal pentatellurides HfTe/sub 5/ and ZrTe/sub 5/ have been observed to possess high thermoelectric power factors and anomalous electrical transport behavior. The temperature dependence of the resistivity is semimetallic except for a large resistive peak as a function of temperature at around 75 K for HfTe/sub 5/ and 145 K for ZrTe/sub 5/. At a temperature corresponding to this peak, the thermopower crosses zero as it moves from large positive values to large negative values. Previous doping studies have shown profound and varied effects on the anomalous transport. In this study we investigate the effect on the electrical resistivity, thermopower, and magnetoresistance of doping HfTe/sub 5/ with rare-earth elements. Doping with rare-earth elements of increasing atomic number leads to a systematic suppression of the anomalous transport behavior and large magnetoresistive effect observed in the parent compound. Rare-earth doping also leads to an enhancement of the thermoelectric power factor over previously studied pentatellurides. For nominal Hf/sub 0.75/Nd/sub 0.25/Te/sub 5/ and Hf/sub 0.75/Sm/sub 0.25/Te/sub 5/, values more than a factor of 2 larger than that of the commonly used thermoelectric material Bi/sub 2/Te/sub 3/ were observed.
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