Transition-Metal Oxides for Thermoelectric Generation
The relevance of (bulk) transition-metal oxides for thermoelectric generation is discussed. A large power factor (i.e., a large electronic conductivity coexisting with a large Seebeck coefficient) seems more easily achievable in either hopping-type semiconductors or in highly correlated metallic sys...
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Published in | Journal of electronic materials Vol. 38; no. 7; pp. 1078 - 1082 |
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Main Authors | , , , , , , , |
Format | Journal Article Conference Proceeding |
Language | English |
Published |
Boston
Springer US
01.07.2009
Springer Springer Nature B.V Institute of Electrical and Electronics Engineers |
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Abstract | The relevance of (bulk) transition-metal oxides for thermoelectric generation is discussed. A large power factor (i.e., a large electronic conductivity coexisting with a large Seebeck coefficient) seems more easily achievable in either hopping-type semiconductors or in highly correlated metallic systems such as layered cobaltites. |
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AbstractList | The relevance of (bulk) transition-metal oxides for thermoelectric generation is discussed. A large power factor (i.e., a large electronic conductivity coexisting with a large Seebeck coefficient) seems more easily achievable in either hopping-type semiconductors or in highly correlated metallic systems such as layered cobaltites. The relevance of (bulk) transition-metal oxides for thermoelectric generation is discussed. A large power factor (i.e., a large electronic conductivity coexisting with a large Seebeck coefficient) seems more easily achievable in either hopping-type semiconductors or in highly correlated metallic systems such as layered cobaltites. [PUBLICATION ABSTRACT] |
Author | Doumerc, J.P. Decourt, R. Darriet, J. Pollet, M. Delmas, C. Carlier, D. Blangero, M. Berthelot, R. |
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Cites_doi | 10.1016/0167-2738(84)90180-2 10.1016/0167-2738(81)90076-X 10.1103/PhysRevB.54.7720 10.1016/0025-5408(80)90199-3 10.1016/S1359-0286(01)00032-8 10.1038/nature05531 10.1103/PhysRevB.56.R12685 10.1103/PhysRevB.71.153102 10.1038/nature01639 10.1103/PhysRevB.74.184507 10.1021/ic0514804 10.1016/0167-2738(83)90271-0 10.1103/PhysRevB.70.184110 10.1006/jssc.1994.1124 10.1103/PhysRevB.76.094101 |
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Keywords | Heikes formula Thermoelectric power transition-metal oxides alkali cobaltates electrical conductivity electronic correlations iono-covalent bonding Cobalt oxide Thermoelectric conversion Electronic properties Electrical conductivity Semiconductor materials Electronic conductivity Seebeck effect Covalent bonds Thermoelectric materials Electron correlations Transition elements Strongly correlated electron systems Cobaltite Electronic correlations Alkali cobaltates Transition-metal oxides Iono-covalent bonding |
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SubjectTerms | Applied sciences Characterization and Evaluation of Materials Chemical Sciences Chemistry and Materials Science Condensed matter: electronic structure, electrical, magnetic, and optical properties Conductivity Conductivity phenomena in semiconductors and insulators Direct energy conversion and energy accumulation Electrical engineering. Electrical power engineering Electrical power engineering Electronic transport in condensed matter Electronics Electronics and Microelectronics Exact sciences and technology Instrumentation Material chemistry Materials Science Optical and Electronic Materials Physics Semiconductors Solid State Physics Thermoelectric and thermomagnetic effects Thermoelectric conversion |
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