Quantum Dot Superlattice Thermoelectric Materials and Devices

Author:

Harman T. C.1,Taylor P. J.1,Walsh M. P.1,LaForge B. E.1

Affiliation:

1. Lincoln Laboratory, Massachusetts Institute of Technology, Lexington, MA 02420, USA.

Abstract

PbSeTe-based quantum dot superlattice structures grown by molecular beam epitaxy have been investigated for applications in thermoelectrics. We demonstrate improved cooling values relative to the conventional bulk (Bi,Sb) 2 (Se,Te) 3 thermoelectric materials using a n-type film in a one-leg thermoelectric device test setup, which cooled the cold junction 43.7 K below the room temperature hot junction temperature of 299.7 K. The typical device consists of a substrate-free, bulk-like (typically 0.1 millimeter in thickness, 10 millimeters in width, and 5 millimeters in length) slab of nanostructured PbSeTe/PbTe as the n-type leg and a metal wire as the p-type leg.

Publisher

American Association for the Advancement of Science (AAAS)

Subject

Multidisciplinary

Reference13 articles.

1. Harman T. C., Taylor P. J., Spears D. L., Walsh M. P., J. Electron. Mater. Lett. 29, L1 (2000).

2. ___ in 18th International Conference on Thermoelectrics : ICT Symposium Proceedings Baltimore MD (IEEE Piscataway NJ 1999) pp. 280–284.

3. M. S. Dresselhaus in Recent Trends in Thermoelectric Materials Research III Semiconductors and Semimetals T. W. Tritt vol. Ed R. K. Willardson E. R. Weber series Eds. (Academic Press London 2001) vol. 71 chap. 1. See also the other four chapters in vol. 71 as well as vols. 69 and 70.

4. R. M. Rowe Ed. CRC Handbook of Thermoelectrics (CRC Press Boca Raton FL 1995).

5. T. C. Harman J. M. Honig Thermoelectric and Thermomagnetic Effects and Applications (McGraw-Hill New York 1967) p. 291.

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