Drift-diffusion contributions to the thermopower and Nernst–Ettingshausen coefficient of graphite
Author:
Affiliation:
1. a Service Basses Températures , Centre d'Etudes Nucléaires de Grenoble , 85X-38041 , Grenoble-Cedex , France
2. b Department of Physics , Colorado State University , Fort Collins , Colorado , 80523 , U.S.A.
Publisher
Informa UK Limited
Subject
General Physics and Astronomy,General Chemical Engineering
Link
https://www.tandfonline.com/doi/pdf/10.1080/01418638008224029
Reference53 articles.
1. Memoire de Thèse;Ayache C.,1978
2. Observation of a new anomaly in the low-temperature thermoelectric power of graphite: Interpretation by a phonon-drag effect acting on theH-point minority holes
3. Thermoelectric and thermomagnetic properties of graphite—I
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1. Thermal conductivity and thermopower of graphite at very low temperatures;Physical Review B;1985-05-15
2. Thermopower of exfoliated graphites between 1.7 and 300 K;Physical Review B;1982-03-15
3. Temperature variation of the thermopower of a graphite-FeCl3intercalation compound;Journal of Physics C: Solid State Physics;1981-04-20
4. Thermoelectric power of soft carbons between 4.2 and 280 K in relation to phonon drag effect;Carbon;1981
5. Optics with gradients of free carrier concentration;Festkörperprobleme 26
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