Title
Rational synthesis of ultrathin n-type Bi <inf>2</inf>Te <inf>3</inf> nanowires with enhanced thermoelectric properties
Date Issued
11 January 2012
Access level
metadata only access
Resource Type
journal article
Author(s)
Purdue University
Abstract
A rational yet scalable solution phase method has been established, for the first time, to obtain n-type Bi 2Te 3 ultrathin nanowires with an average diameter of 8 nm in high yield (up to 93%). Thermoelectric properties of bulk pellets fabricated by compressing the nanowire powder through spark plasma sintering have been investigated. Compared to the current commercial n-type Bi 2Te 3-based bulk materials, our nanowire devices exhibit an enhanced ZT of 0.96 peaked at 380 K due to a significant reduction of thermal conductivity derived from phonon scattering at the nanoscale interfaces in the bulk pellets, which corresponds to a 13% enhancement compared to that of the best n-type commercial Bi 2Te 2.7Se 0.3 single crystals (∼0.85) and is comparable to the best reported result of n-type Bi 2Te 2.7Se 0.3 sample (ZT = 1.04) fabricated by the hot pressing of ball-milled powder. The uniformity and high yield of the nanowires provide a promising route to make significant contributions to the manufacture of nanotechnology-based thermoelectric power generation and solid-state cooling devices with superior performance in a reliable and a reproducible way. © 2011 American Chemical Society.
Start page
56
End page
60
Volume
12
Issue
1
Language
English
OCDE Knowledge area
Física y Astronomía
Nano-tecnología
Subjects
Scopus EID
2-s2.0-84855815494
PubMed ID
Source
Nano Letters
ISSN of the container
15306984
Sources of information:
Directorio de Producción Científica
Scopus