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Thickness dependence of electrical conductivity and thermo-electric power of Bi2.0Te2.7Se0.3/Bi0.4Te3.0Sb1.6 thermo-electric devices

机译:厚度依赖性的电导率和热电力的Bi2.0te2.7se0.3 / Bi0.4te3.0SB1.6热电装置

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摘要

The electrical and thermo-electric (TE) properties of the bismuth telluride (BiTe) -based two-dimensional (2D) thermoelectric (TE) devices with different thin film thicknesses are analyzed systematically. The studied thin film thicknesses are covered from 100 nm to 400 nm. The accurate measured systems for the Seebeck coefficient (S) and electrical conductivity (σ) extractions are also built up in this work. When the thickness of the BiTe-based thin film in the TE device is scaled from 400 nm to 100 nm, the occurred optimized temperature (T) for the highest S value in these devices is found to be shifted from 60°C to 100°C. On the other hand, the best σ is observed in the thinner (100 nm) BiTe-based thin film devices under the higher T (130°C). Based on the understanding of S and σ values, the power factor and the figure of merit (ZT) – i.e., the ability of a TE material to efficiently produce electricity – are also investigated further. Compared with the commercial bulk BiTe TE device, we demonstrate that the ZT value can be improved ∼50% with the thinner (100 nm) BiTe-based thin film devices in the higher T (>100°C) region.
机译:系统地分析了具有不同薄膜厚度的基于碲化酰胺(咬合)的二维(2D)的二维(2D)热电(TE)器件的电气和热电(TE)性能。所研究的薄膜厚度从100nm覆盖到400nm。在这项工作中还建立了塞贝克系数的精确测量系统和电导率(σ)提取。当TE器件中的咬合薄膜的厚度从400nm缩放到100nm时,发现这些器件中最高值的发生的优化温度(t)被发现从60°C转移到100° C。另一方面,在较高的T(130℃)下的较薄(100nm)咬合的薄膜装置中观察到最佳σ。基于对S和Σ值的理解,功率因数和优异(ZT) - 即,TE材料有效地产生电力的能力 - 也进一步研究。与商业批量咬合装置相比,我们证明ZT值可以在较高的T(> 100℃)区域中的较薄(100nm)咬合的薄膜器件改善~50%。

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