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Thermoelectric properties of a vertically aligned carbon nanotube array with embedded bismuth telluride
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Thermoelectric properties of a vertically aligned carbon nanotube array with embedded bismuth telluride

Shih Chun Tseng, Chin-An Wang, Hsu Shen ChuHung-Yin Tsai
Journal of Materials Science, 卷.57(41), 頁碼.19396-19404
11/2022

摘要

Materials Science (all) Mechanics of Materials Mechanical Engineering
Recently, thermoelectric (TE) devices have attracted much attention because they have no moving parts, simple structures, high reliability, and environmental friendly, when compared to other green energy techniques. In this paper, we report a novel thermoelectric composite constructed one with a self-assembled highly oriented Sb doped Bi 2 Te 3 and one without doping nanoflake layer deposited on regular vertically aligned checkerboard-patterned multi-walled carbon nanotube (MWCNT) arrays (500 nm squares and 1 µm pitch) on insulated SiO 2 /Si substrates. The height of Bi 2 Te 3 /Bi 0.4 Sb 1.6 Te 3, MWCNTs and volumetric ratio of MWCNT to Bi 2 Te 3 / Bi 0.4 Sb 1.6 Te 3 are about 3 μm, 1.5 μm, and 25%, respectively. The blending of regular vertically aligned MWCNT patterns into Bi 0.4 Sb 1.6 Te 3 results in a dramatically enhancement of Seebeck coefficient and electrical conductivity. The Seebeck coefficient and power factor of Bi 0.4 Sb 1.6 Te 3 -MWCNTs show a maximum value of 600 μV/K and 60 μW/cm-K 2 at 160 K and gradually decrease to 409 μV/K, and about 14.1 μW/cm-K 2 at 300 K, respectively. The significant records of the low temperature Seebeck coefficients and relative electrical properties are extremely important for the fundamental understanding of vertically aligned MWCNT embedded thermoelectric composites.

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https://doi.org/10.1007/s10853-022-07846-w檢視
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