arXiv · 1201.4370
Laser-sintered thin films of doped SiGe nanoparticles
Abstract
We present a study of the morphology and the thermoelectric properties of short-pulse laser-sintered (LS) nanoparticle (NP) thin films, consisting of SiGe alloy NPs or composites of Si and Ge NPs. Laser-sintering of spin-coated NP films in vacuum results in a macroporous percolating network with a typical thickness of 300 nm. The Seebeck coefficient is independent of the sintering process and typical for degenerate doping. The electrical conductivity of LS films rises with increasing temperature, best described by a power-law and influenced by two-dimensional percolation effects.
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Benedikt Stoib, Tim Langmann, Sonja Matich, Tobias Antesberger, Niklas Stein, Sebastian Angst, Nils Petermann, Roland Schmechel, Gabi Schierning, Dietrich E. Wolf, Hartmut Wiggers, Martin Stutzmann, Martin S. Brandt. 2012-01-20. Laser-sintered thin films of doped SiGe nanoparticles. https://doi.org/10.1063/1.4726041
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