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)
Zhang G.
Kirk B.
Yang H.
Xu X.
Chen Y.P.
Wu Y.
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
Scopus EID
2-s2.0-84855815494
PubMed ID
Source
Nano Letters
ISSN of the container
15306984
Sources of information: Directorio de Producción Científica Scopus