Thermal Conductivity of Nanostructured Semiconductor Alloys
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Publisher
Springer International Publishing
Link
http://link.springer.com/content/pdf/10.1007/978-3-319-44680-6_16
Reference137 articles.
1. Abeles B (1963) Lattice thermal conductivity of disordered semiconductor alloys at high temperatures. Phys Rev 131:1906–1911
2. Abeles B, Beers DS, Cody GD, Dismukes JP (1962) Thermal conductivity of Ge-Si alloys at high temperatures. Phys Rev 125(1):44–46
3. Aksamija Z (2014) Lattice thermal transport in si-based nanocomposites for thermoelectric applications. J Electron Mater 44:1644
4. Aksamija Z, Knezevic I (2010a) Anisotropy and boundary scattering in the lattice thermal conductivity of silicon nanomembranes. Phys Rev B 82:045319
5. Aksamija Z, Knezevic I (2010b) Thermoelectric properties of silicon nanostructures. J Comput Electron 9:173
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