Understanding the Local Seebeck Coefficient of Carbon Nanotube Fibers Using the Photothermoelectric Effect

塞贝克系数 碳纳米管 材料科学 热电效应 纳米管 纳米技术 复合材料 凝聚态物理 工程物理 热力学 物理 热导率
作者
Shusen Liao,Yingru Song,Shengjie Yu,Lauren W. Taylor,Oliver S. Dewey,Matteo Pasquali,Junichiro Kono,Geoff Wehmeyer,Douglas Natelson
出处
期刊:ACS applied electronic materials [American Chemical Society]
卷期号:6 (11): 8000-8007
标识
DOI:10.1021/acsaelm.4c01343
摘要

The applications of carbon nanotube fibers (CNTF) are broad because of their flexibility, high specific strength, and outstanding thermal and electrical properties. Although CNTFs have a hierarchical structure, their macroscopic properties, are usually discussed and investigated at the scale of the whole fiber, with a lack of understanding of the local properties, such as the Seebeck coefficient and the Fermi energy. Here, we study the variation of the Seebeck coefficient along the fibers by using the photothermoelectric (PTE) effect. The photovoltage is measured as a function of position, and the laser-induced temperature profile is obtained by a robust steady-state thermal model. The Seebeck coefficient as a function of position along the fiber can be obtained from the measured, spatially mapped photovoltage and temperature profile. We observe a correlation between the variation of the Seebeck coefficient and the shift of Raman modes, both related to the doping level and the Fermi energy. We find the Seebeck coefficient fluctuation in the pristine fiber is due to the nonuniformity of the doping level and the Fermi energy. With an established model to correlate the thermoelectric response and the Fermi energy, our PTE-based method can probe the Fermi energy fluctuation along the fiber with a resolution better than 1 meV, which is far beyond the capability of commercial Raman spectroscopy. This study shows a nondestructive method to quantify the uniformity of CNTF at the micrometer scale, key for fabricating more uniform and higher quality CNTF and generalizable to other conducting fiber systems.

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