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电接触电阻对单根金属纳米线热导率测量及维德曼-夫兰兹定律的影响

Effect of Electrical Contact Resistance on Measurement of Thermal Conductivity and Wiedemann-Franz Law for Individual Metallic Nanowires.

作者信息

Wang Jianli, Wu Zhizheng, Mao Chengkun, Zhao Yunfeng, Yang Juekuan, Chen Yunfei

机构信息

Jiangsu Key Laboratory for Design and Manufacture of Micro/Nano Biomedical Instruments, Southeast University, Nanjing, 210096, China.

Tianjin Key Laboratory of Advanced Functional Porous Materials, Institute for New Energy Materials & Low-Carbon Technologies, School of Materials Science and Engineering, Tianjin University of Technology, Tianjin, 300384, P.R. China.

出版信息

Sci Rep. 2018 Mar 20;8(1):4862. doi: 10.1038/s41598-018-23291-9.

Abstract

The electrical and thermal properties of metallic nanostructures have attracted considerable fundamental and technological interests. Recent studies confirmed a dramatic decrease in the electrical and thermal conductivities when the dimension is comparable or even smaller than the electron mean free path. However, the verification of the Wiedemann-Franz law in these nanostructures remains hotly debated. The Lorenz number obtained from the two-probe measurement is found to be much larger than that from the four-probe measurement. Here, we reported the electrical and thermal properties of the individual silver nanowires measured by the two-probe and four-probe configurations. The measured electrical contact resistance is found to be nearly temperature-independent, indicating a ballistic-dominant electronic transport at the contacts. When the effect of thermal contact resistance is diminished, the Lorenz number measured by the four-probe configuration is comparable to the Sommerfeld value, verifying that the Wiedemann-Franz law holds in the monocrystalline-like silver nanowire. Comparatively, the derived electrical conductivity becomes smaller and the thermal conductivity becomes larger in the two-probe measurement, confirming that the electrical contact resistance will introduce a large error. The present study experimentally demonstrates a reasonable explanation to the discouragingly broad span in the Lorenz number obtained from different metallic nanostructures.

摘要

金属纳米结构的电学和热学性质引起了人们在基础研究和技术应用方面的广泛关注。最近的研究证实,当尺寸与电子平均自由程相当甚至更小时,电导率和热导率会急剧下降。然而,这些纳米结构中维德曼-弗兰兹定律的验证仍存在激烈争议。从两探针测量中获得的洛伦兹数远大于四探针测量的结果。在此,我们报道了通过两探针和四探针配置测量的单个银纳米线的电学和热学性质。测量发现,电接触电阻几乎与温度无关,这表明接触处的电子输运以弹道输运为主。当热接触电阻的影响减弱时,四探针配置测量的洛伦兹数与索末菲值相当,这证实了维德曼-弗兰兹定律在类单晶银纳米线中成立。相比之下,在两探针测量中,导出的电导率变小而热导率变大,这证实了电接触电阻会引入较大误差。本研究通过实验对不同金属纳米结构获得的洛伦兹数令人沮丧的广泛范围给出了合理的解释。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9dc9/5861060/52f672a7b097/41598_2018_23291_Fig1_HTML.jpg

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