首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Nanoscale thermoelectric properties of Bi2Te3 - Graphene nanocomposites: Conducting atomic force, scanning thermal and kelvin probe microscopy studies
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Nanoscale thermoelectric properties of Bi2Te3 - Graphene nanocomposites: Conducting atomic force, scanning thermal and kelvin probe microscopy studies

机译:Bi2Te3-石墨烯纳米复合材料的纳米级热电性质:传导原子力,扫描热和开尔文探针显微镜研究

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In the present study, the effect of the presence of monolayer graphene (G) on the nanoscale electrical and thermal conductivities of Bi2Te3 has been investigated. Atomic force and conducting atomic force microscopic studies show that G incorporation results in lower electrical conductivity at Bi2Te3: Graphene (Bi2Te3: G) interfaces. The Kelvin probe and scanning thermal images show that Bi2Te3 composites have different work function and thermal conductivity values compared to Bi2Te3 sample. The decrease in the value of thermal conductivity was further confirmed by measuring the thermoelectric properties of Bi2Te3 and its composites in the temperature range 300-480 K. The simultaneous increase in the value of power factor and decrease in the value of thermal conductivity of the Bi2Te3/G composite sample led to enhanced value of ZT - 0.92. This increase in the value of ZT is attributed to increased phonon scattering, and limited effect on the electron transport due to large interface area and 2D nature of G. The present study provides an insight into a new path for direct nanoscale measurements of topographical, electrical and thermally conducting characteristics of nanocomposite samples which is important for establishing the role of 2D materials for improving thermoelectric properties. (C) 2016 Elsevier B.V. All rights reserved.
机译:在本研究中,已经研究了单层石墨烯(G)的存在对Bi2Te3纳米级电导率和热导率的影响。原子力和传导原子力的微观研究表明,G的掺入导致Bi2Te3:石墨烯(Bi2Te3:G)界面处的电导率降低。开尔文探针和扫描热图像显示,与Bi2Te3样品相比,Bi2Te3复合材料具有不同的功函数和热导率值。通过在300-480 K的温度范围内测量Bi2Te3及其复合材料的热电性能,可以进一步确认导热系数的降低。功率因数的同时增大和Bi2Te3导热系数的降低/ G复合样品导致ZT值提高-0.92。 ZT值的这种增加归因于声子散射的增加,以及由于大的界面面积和G的2D性质而对电子传输的影响有限。本研究为直接纳米级地形学,电学测量提供了新途径以及纳米复合材料样品的导热特性,这对于确定2D材料在改善热电性能中的作用至关重要。 (C)2016 Elsevier B.V.保留所有权利。

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