Department of Electrical Engineering, National Central University, Taoyuan 32001, Taiwan.
Nanoscale. 2013 Jun 7;5(11):4669-72. doi: 10.1039/c3nr00876b. Epub 2013 Apr 25.
Thermoelectric materials have attracted much attention due to the current interest in energy conversion and recent advancements in nano-engineering. A simple approach to synthesize BiTe and Bi2Te3 micro/nanowires was developed by combining solution chemistry reactions and catalyst-free vapor-solid growth. A pathway to transform the as-grown BiTe nanostructures into Bi2Te3 can be identified through the Bi-Te phase diagram. Structural characterization of these products was identified using standard microscopy practices. Meanwhile, thermoelectric properties of individual Bi-Te compound micro/nanowires were determined by the suspended microdevice technique. This approach provides an applicable route to synthesize advanced high performance thermoelectric materials in quantities and can be used for a wide range of low-dimensional structures.
热电材料由于当前对能量转换的兴趣以及纳米工程的最新进展而引起了广泛关注。通过结合溶液化学反应和无催化剂的气-固生长,开发了一种合成 BiTe 和 Bi2Te3 微/纳线的简单方法。通过 Bi-Te 相图可以确定将生长的 BiTe 纳米结构转化为 Bi2Te3 的途径。通过标准显微镜技术确定了这些产物的结构特征。同时,通过悬浮微器件技术确定了单个 Bi-Te 化合物微/纳线的热电性能。这种方法为大量合成先进的高性能热电材料提供了一种可行的途径,并且可以用于广泛的低维结构。