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Division of Nanotechnology
1. Journal Articles
Influence of powder morphology on thermoelectric anisotropy of spark-plasma-sintered Bi-Te-based thermoelectric materials
Kim, Dong Hwan
;
Kim, Cham
;
Heo, Seong Hyeon
;
Kim, Hoyoung
Division of Nanotechnology
1. Journal Articles
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Title
Influence of powder morphology on thermoelectric anisotropy of spark-plasma-sintered Bi-Te-based thermoelectric materials
Issued Date
2011-01
Citation
Kim, Dong Hwan. (2011-01). Influence of powder morphology on thermoelectric anisotropy of spark-plasma-sintered Bi-Te-based thermoelectric materials. Acta Materialia, 59(1), 405–411. doi: 10.1016/j.actamat.2010.09.054
Type
Article
Author Keywords
Thermoelectric
;
Anisotropy
;
Morphology
;
Spark plasma sintering
Keywords
(BI2TE3)(SB2TE3)(SB2SE3)
;
ALLOYS
;
Anisotropic Behaviors
;
ANISOTROPY
;
BI2TE3
;
BISMUTH TELLURIDE
;
Electric Conductivity
;
Electric Sparks
;
Electrical Resistivity
;
Flake-Like Shapes
;
HOT EXTRUSION
;
Morphology
;
Nano-Sized Particles
;
P-Type
;
Plasmas
;
Powder Morphology
;
Powders
;
SB2TE3
;
SBI3-DOPED BI2TE2.85SE0.15
;
SINGLE-CRYSTALS
;
Sintered Body
;
SOLID-SOLUTIONS
;
Spark Plasma
;
Spark Plasma Sintering
;
Spherical Shape
;
Starting Powders
;
Tellurium Compounds
;
Thermoelectric
;
Thermoelectric Equipment
;
Thermoelectric Material
;
Thermoelectric Properties
;
Thermoelectricity
;
TRANSPORT-PROPERTIES
ISSN
1359-6454
Abstract
The influence of the starting powders' morphology on the thermoelectric anisotropy of Bi-Te-based thermoelectric materials that are fabricated by spark plasma sintering has been investigated. Starting powders with three types of morphologies are prepared through a chemical reaction method (nano-sized particles with a spherical shape), a conventional pulverization method (flake-like shape) and a gas atomizing method (spherical shape). The thermoelectric anisotropy of each sintered body is determined by measuring the electrical resistivity and thermal conductivity in both the parallel and perpendicular directions to the spark plasma sintering pressing direction. The p-type Bi0.5Sb1.5Te3.0-sintered body that is composed of the spherically shaped powder has isotropic thermoelectric properties, while the same material composed of the flake-like powder shows anisotropic behavior. The n-type Bi2Te3 sintered body has a relatively small anisotropy when it is composed from the spherically shaped powder. © 2010 Acta Materialia Inc. Published by Elsevier Ltd. All rights reserved.
URI
http://hdl.handle.net/20.500.11750/3471
DOI
10.1016/j.actamat.2010.09.054
Publisher
Elsevier Ltd
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Kim, Dong Hwan
김동환
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