Development of environment friendly thermoelectric material and its application to waste heat recovery system

Author:

TOYODA Takeshi1

Affiliation:

1. Electronic Information Division, Industrial Research Institute of Ishikawa

Publisher

Japan Association of Mineralogical Sciences

Subject

Economic Geology,Geochemistry and Petrology

Reference12 articles.

1. Asano, H., Hayakawa, J. and Matsui, M. (1996): Giant magnetoresistance of a two-dimensional ferromagnet La2−2xCa1+2xMn2O7. Appl. Phys. Lett., 68, 3638–3640.

2. Bartel, J.J., Edger, F. and Westrum, J.R. (1976): Thermodynamics of Fe(II) Fe(III) oxide systems I. Hydrothermal Fe3O4. J. Chem. Thermodynamics, 8, 575–581.

3. Fujii, Y. and Shirane, G. and Yamada, Y. (1975): Study of the 123 K phase transition of magnetite by critical neutron scattering. Phys. Rev. B, 11, 2036–2041.

4. Kuipers, A.J.M. and Brabers, V.A.M. (1976): Thermoelectric propertys of magnetite at the Verwey transition. Phys. Rev. B, 14, 1401–1405.

5. Sasaki, S. (1995): Fe2+ and Fe3+ ions distinguishable by X-ray anomalous scattering: Method and its application to magnetite. Rev. Sci. Instrum., 66, 1573–1576.

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