Thermoelectric effect in superlattices; applicability of coherent and incoherent transport models

Author:

Musland Lars,Flage-Larsen Espen

Funder

Research Council of Norway

Publisher

Elsevier BV

Subject

Computational Mathematics,General Physics and Astronomy,Mechanics of Materials,General Materials Science,General Chemistry,General Computer Science

Reference74 articles.

1. Thermoelectric Materials: Advance and Applications;Maciá,2015

2. Cross-plane Seebeck coefficient and Lorenz number in superlattices;Bian;Phys. Rev. B,2007

3. E. Flage-Larsen, O.M. Løvvik, Materials, Preparation, and Characterization in Thermoelectrics, in: D.M. Rowe (Ed.), Band Structure Guidelines for Higher Figure-of-Merit: Analytic Band Generation and Energy Filtering, CRC Press, 2012 (Chapter 10).

4. Enhancement of thermoelectric properties by energy filtering: theoretical potential and experimental reality in nanostructured ZnSb;Berland;J. Appl. Phys.,2016

5. Silicon de novo: energy filtering and enhanced thermoelectric performances of nanocrystalline silicon and silicon alloys;Narducci;J. Mater. Chem. C,2015

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