水热合成
星团(航天器)
材料科学
热液循环
纳米技术
自组装
生物分子
计算机科学
化学工程
工程类
程序设计语言
作者
Jianli Mi,Nina Lock,Ting Sun,Mogens Christensen,Martin Søndergaard,Peter Hald,Huey Hoon Hng,Jan Ma,Bo B. Iversen
出处
期刊:ACS Nano
[American Chemical Society]
日期:2010-04-20
卷期号:4 (5): 2523-2530
被引量:94
摘要
A simple biomolecule-assisted hydrothermal approach has been developed for the fabrication of Bi2Te3 thermoelectric nanomaterials. The product has a nanostring-cluster hierarchical structure which is composed of ordered and aligned platelet-like crystals. The platelets are ∼100 nm in diameter and only ∼10 nm thick even though a high reaction temperature of 220 °C and a long reaction time of 24 h were applied to prepare the sample. The growth of the Bi2Te3 hierarchical structure appears to be a self-assembly process. Initially, Te nanorods are formed using alginic acid as both reductant and template. Subsequently, Bi2Te3 grows in a certain direction on the surface of the Te rods, resulting in the nanostring structure. The nanostrings further recombine side-by-side with each other to achieve the ordered nanostring clusters. The particle size and morphology can be controlled by adjusting the concentration of NaOH, which plays a crucial role on the formation mechanism of Bi2Te3. An even smaller polycrystalline Bi2Te3 superstructure composed of polycrystalline nanorods with some nanoplatelets attached to the nanorods is achieved at lower NaOH concentration. The room temperature thermoelectric properties have been evaluated with an average Seebeck coefficient of −172 μV K−1, an electrical resistivity of 1.97 × 10−3 Ωm, and a thermal conductivity of 0.29 W m−1 K−1.
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