Effects of Bi2Se3 Nanoparticle Inclusions on the Microstructure and Thermoelectric Properties of Bi2Te3-Based Nanocomposites

被引:14
|
作者
Kim, Heejin [1 ,2 ]
Han, Mi-Kyung [1 ]
Yo, Chul-Hyun [3 ]
Lee, Wooyoung [2 ]
Kim, Sung-Jin [1 ]
机构
[1] Ewha Womans Univ, Dept Chem & Nano Sci, Seoul 120750, South Korea
[2] Yonsei Univ, Dept Mat Sci & Engn, Seoul 120749, South Korea
[3] Yonsei Univ, Dept Chem, Seoul 130741, South Korea
基金
新加坡国家研究基金会;
关键词
Bismuth telluride; thermoelectric; nanocomposite; NANOSTRUCTURED THERMOELECTRICS; FIGURE; MERIT; POWER;
D O I
10.1007/s11664-012-2255-7
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
A series of thermoelectric nanocomposite samples were prepared by integrating Bi2Se3 nanoparticles into a bulk Bi2Te3 matrix. Primarily, spherical Bi2Se3 nanoparticles with diameter of similar to 30 nm were synthesized by combining bismuth acetate with elemental Te in oleic acid solution. Bi2Te3-based nanocomposite samples were prepared by consolidating the appropriate quantity of Bi2Se3 nanoparticles with the starting elements (Bi and Te) using typical solid-state synthetic reactions. The microstructure and composition of the Bi2Te3-based nanocomposites, as well as the effects of the Bi2Se3 nanoparticles on their thermoelectric properties, are investigated. Transmission electron microscopy observation of the Bi2Te3-based nanocomposites reveals two types of interface between the constituent materials, i.e., coherent and incoherent, depending on the Bi2Se3 concentration. The Bi2Se3 nanoparticles in the Bi2Te3 matrix act as scattering centers for a wider range of phonon frequencies, thereby reducing the thermal conductivity. As a result, the maximum ZT value of 0.75 is obtained for the Bi2Te3 nanocomposite with 10 wt.% Bi2Se3 nanoparticles at room temperature. It is clear that the reduction in the thermal conductivity plays a central role in the enhancement of the ZT value.
引用
收藏
页码:3411 / 3416
页数:6
相关论文
共 50 条
  • [21] Synthesis and thermoelectric properties of Bi2Se3 nanostructures
    Kadel, K.
    Kumari, Latha
    Li, Wz
    Huang, Jian Yu
    Provencio, Paula P.
    Nanoscale Research Letters, 2011, 6 : 1 - 7
  • [22] The effect of powder size on thermoelectric properties of 95%Bi2Te3-5%Bi2Se3 alloy
    Hong, S. J.
    Hwang, K. S.
    Byeon, J. W.
    Lee, M. K.
    Rhee, C. K.
    Chun, B. S.
    NANOCOMPOSITES AND NANOPOROUS MATERIALS, 2007, 119 : 271 - +
  • [23] ELECTROPHYSICAL PROPERTIES OF MOLTEN BI2SE3, SB2TE3, AND BI2TE3
    GLAZOV, VM
    KOLTSOV, VB
    KURBATOV, VA
    INORGANIC MATERIALS, 1986, 22 (08) : 1106 - 1112
  • [24] Hygrothermal Stability of Bi2Te3-based Thermoelectric Materials
    Xiao Yani
    Lyu Jianan
    Li Zhenming
    Liu Mingyang
    Liu Wei
    Ren Zhigang
    Liu Hongjing
    Yang Dongwang
    Yan Yonggao
    JOURNAL OF INORGANIC MATERIALS, 2023, 38 (07) : 800 - +
  • [25] ELECTROREFLECTANCE AND THERMOREFLECTANCE OF BI2TE3 AND BI2SE3
    TANIGUCHI, K
    MORITANI, A
    HAMAGUCHI, C
    NAKAI, J
    SURFACE SCIENCE, 1973, 37 (01) : 212 - 217
  • [26] Influence of magnetic impurities on thermoelectric capabilities of Bi2Te3, Sb2Te3, and Bi2Se3
    Kulbachinskii, V. A.
    Kytin, V. G.
    Kudryashov, A. A.
    Tarasov, P. M.
    MAGNETISM AND MAGNETIC MATERIALS V, 2012, 190 : 558 - 561
  • [27] Progress in Bi2Te3-Based Superlattice Thermoelectric Materials
    Bulman, Gary E.
    Stokes, C. David
    Barletta, Philip T.
    Venkatasubramanian, Rama
    ENERGY HARVESTING AND STORAGE: MATERIALS, DEVICES, AND APPLICATIONS II, 2011, 8035
  • [28] Fundamental and progress of Bi2Te3-based thermoelectric materials
    Hong, Min
    Chen, Zhi-Gang
    Ziou, Jin
    CHINESE PHYSICS B, 2018, 27 (04)
  • [29] Improving Bi2Te3-based thermoelectric nanowire microstructure via thermal processing
    Michael P. Siegal
    Steven J. Limmer
    Jessica L. Lensch-Falk
    Kristopher J. Erickson
    Douglas L. Medlin
    W. Graham Yelton
    Caitlin Rochford
    Journal of Materials Research, 2014, 29 : 182 - 189
  • [30] Fundamental and progress of Bi2Te3-based thermoelectric materials
    洪敏
    陈志刚
    邹进
    ChinesePhysicsB, 2018, 27 (04) : 54 - 78