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Review of Lead-Telluride Bonding Concepts

Published online by Cambridge University Press:  15 February 2011

Norbert B. Elsner*
Affiliation:
President, Hi-Z Technology, Inc., 11180 Roselle Street, Suite G, San Diego, CA 92121-f1211
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Abstract

Over the past few years, there has been a trend to use thermoelectrics for generating power from waste heat or coupling the thermoelectrics with fossil fuel driven appliances or Diesel engines to make them more efficient and/or independent of outside power. PbTe based alloys are being considered for some of these applications. Presented below are some of the techniques that have been pursued in making electrical contacts. Because PbTe can be used up to ∼ 600°C, these alloys offer more efficiency than the (Bi,Sb)2 (SeTe)3 based alloys which are only useful to <300° C. Unfortunately, at these h~gher temperatures, the PbTe based alloys need to be encapsulated to prevent oxidation. This latter step is not addressed in this paper, but can significantly add to the price of a PbTe generator.

Type
Research Article
Copyright
Copyright © Materials Research Society 1991

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References

REFERENCES

1. Fritts, R.W., “Lead Telluride & Junctions in Thermoelectric Materials & Devices”, Cadoff & Miller Rheinhold, 1960.Google Scholar
2. Russo, F.A., “Pioneer RTG Progress”, IECEC PROCEEDINGS, 1972.Google Scholar
3. Bass, J.C. & Eisner, N.B., “Design Approaches to Obtain an Improved Thermoelectric Generator”, 30th Power Sources Symposium, June 1982.Google Scholar