Division of Physics and Applied Physics, School of Physical and Mathematical Sciences, Nanyang Technological University, Singapore 637371.
Nano Lett. 2012 Mar 14;12(3):1203-9. doi: 10.1021/nl2034859. Epub 2012 Feb 8.
We report on the enhanced thermoelectric properties of selenium (Se) doped bismuth telluride (Bi(2)Te(3-x)Se(x)) nanoplatelet (NP) composites synthesized by the polyol method. Variation of the Se composition within NPs is demonstrated by X-ray diffraction and Raman spectroscopy. While the calculated lattice parameters closely follow the Vegard's law, a discontinuity in the shifting of the high frequency (E(g)(2) and A(1g)(2)) phonon modes illustrates a two mode behavior for Bi(2)Te(3-x)Se(x) NPs. The electrical resistivity (ρ) of spark plasma sintered pellet composites shows metallic conduction for pure Bi(2)Te(3) NP composites and semiconducting behavior for intermediate Se compositions. The thermal conductivity (κ) for all NP composites is much smaller than the bulk values and is dominated by microstructural grain boundary scattering. With temperature dependent electrical and thermal transport measurements, we show that both the thermoelectric power S (-259 μV/K) and the figure of merit ZT (0.54) are enhanced by nearly a factor of 4 for SPS pellets of Bi(2)Te(2.7)Se(0.3) in comparison to Bi(2)Te(3) NP composites. Tentatively, such an enhancement of the thermoelectric performance in nanoplatelet composites is attributed to the energy filtering of low energy electrons by abundant grain boundaries in aligned nanocomposites.
我们报告了硒(Se)掺杂碲化铋(Bi(2)Te(3-x)Se(x))纳米片(NP)复合材料通过多元醇法合成的增强的热电性能。通过 X 射线衍射和拉曼光谱证明了 NPs 内 Se 组成的变化。虽然计算出的晶格参数紧密遵循 Vegard 定律,但高频(E(g)(2)和 A(1g)(2))声子模式的不连续表明 Bi(2)Te(3-x)Se(x) NPs 具有双模态行为。火花等离子烧结(SPS)块体复合材料的电阻率(ρ)对于纯 Bi(2)Te(3) NP 复合材料表现出金属导电性,对于中间 Se 组成则表现出半导体行为。所有 NP 复合材料的热导率(κ)均远小于块体值,并且由微结构晶粒边界散射主导。通过温度相关的电和热输运测量,我们表明,与 Bi(2)Te(3) NP 复合材料相比,Bi(2)Te(2.7)Se(0.3) SPS 块体的热电功率 S(-259 μV/K)和品质因数 ZT(0.54)分别提高了近 4 倍。暂定而言,纳米片复合材料中热电性能的这种增强归因于纳米复合材料中丰富的晶界对低能电子的能量过滤。