In situ measurements of electrical resistivity of metals in a cubic multi-anvil apparatus by van der Pauw method.

Fan Yang, Xiaojun Hu, Y. Fei
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引用次数: 2

Abstract

On the basis of the van der Pauw method, we developed a new technique for measuring the electrical resistivity of metals in a cubic multi-anvil high-pressure apparatus. Four electrode wires were introduced into the sample chamber and in contact with the pre-pressed metal disk on the periphery. The sample temperature was measured with a NiCr-NiSi (K-type) thermocouple, which was separated from the sample by a thin hexagonal boron nitride layer. The electrodes and thermocouple were electrically insulated from each other and from the heater by an alumina tube as well. Their leads were in connection with cables through the gap between the tungsten carbide anvils. We performed experiments to determine the temperature dependence of electrical resistivity of pure iron at 3 and 5 GPa. The experiments produce reproducible measurements and the results provide an independent check on electrical resistivity data produced by other methods. The new technique provides reliable electrical resistivity measurements of metallic alloys and compounds at high pressure and temperature.
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用范德保法原位测量立方多砧装置中金属的电阻率。
在范德保法的基础上,提出了一种测量立方多砧高压仪器中金属电阻率的新方法。将四根电极线引入样品室,并与外围的预压金属盘接触。用NiCr-NiSi (k型)热电偶测量样品温度,该热电偶与样品由薄六方氮化硼层隔开。电极和热电偶通过氧化铝管相互绝缘,并与加热器绝缘。它们的导线通过碳化钨铁砧之间的间隙与电缆连接。我们进行了实验,确定了纯铁在3和5 GPa时电阻率的温度依赖性。实验产生了可重复的测量结果,并为其他方法产生的电阻率数据提供了独立的检查。这项新技术提供了可靠的金属合金和化合物在高压和高温下的电阻率测量。
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