DocumentCode :
2008226
Title :
Electrodeposition of CoSb/sub 3/ nanowires
Author :
Behnke, J.F. ; Prieto, A.L. ; Stacy, A.M. ; Sands, T.
Author_Institution :
Dept. of Mater. Sci., California Univ., Berkeley, CA, USA
fYear :
1999
fDate :
Aug. 29 1999-Sept. 2 1999
Firstpage :
451
Lastpage :
453
Abstract :
Materials with the skutterudite crystal structure, such as CoSb/sub 3/, have been demonstrated to be promising in the development of high figure-of-merit thermoelectric materials. Theoretical studies have shown that quantum confinement may produce enhancements in the figure-of-merit. Calculations based on the Kubakaddi model for thermopower of a nanowire have shown that nanowires of CoSb/sub 3/ should produce this enhancement at larger wire diameters than other candidate materials, such as Bi/sub 2/Te/sub 3/. This study has used pulse plating followed by a post anneal treatment to fabricate CoSb/sub 3/ electrochemically from a citrate bath. Initial attempts were also made to deposit cobalt and antimony into a porous anodic aluminum oxide matrix. Porous anodic aluminum oxide was chosen as a host material because of its relatively uniform pore diameter and spacing, its vertical walled "test tube" shape, and the high barrier to tunneling that the aluminum oxide provides.
Keywords :
antimony alloys; cobalt alloys; electrodeposits; nanostructured materials; quantum wires; thermoelectric power; CoSb/sub 3/; CoSb/sub 3/ nanowires; Kubakaddi model; citrate bath; electrodeposition; high barrier to tunneling; high figure-of-merit thermoelectric materials; post anneal treatment; quantum confinement; skutterudite crystal structure; spacing; thermopower; uniform pore diameter; Aluminum oxide; Annealing; Bismuth; Cobalt; Crystalline materials; Potential well; Shape; Tellurium; Thermoelectricity; Wire;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Thermoelectrics, 1999. Eighteenth International Conference on
Conference_Location :
Baltimore, MD, USA
ISSN :
1094-2734
Print_ISBN :
0-7803-5451-6
Type :
conf
DOI :
10.1109/ICT.1999.843428
Filename :
843428
Link To Document :
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