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Silicon and Germanium Nanostructures for Photovoltaic Applications: Ab-Initio Results

Ossicini S
•
Amato M
•
Palummo M
altro
Guerra, Roberto
2010
  • journal article

Periodico
NANOSCALE RESEARCH LETTERS
Abstract
Actually, most of the electric energy is being produced by fossil fuels and great is the search for viable alternatives. The most appealing and promising technology is photovoltaics. It will become truly mainstream when its cost will be comparable to other energy sources. One way is to significantly enhance device efficiencies, for example by increasing the number of band gaps in multijunction solar cells or by favoring charge separation in the devices. This can be done by using cells based on nanostructured semiconductors. In this paper, we will present ab-initio results of the structural, electronic and optical properties of (1) silicon and germanium nanoparticles embedded in wide band gap materials and (2) mixed silicon-germanium nanowires. We show that theory can help in understanding the microscopic processes important for devices performances. In particular, we calculated for embedded Si and Ge nanoparticles the dependence of the absorption threshold on size and oxidation, the role of crystallinity and, in some cases, the recombination rates, and we demonstrated that in the case of mixed nanowires, those with a clear interface between Si and Ge show not only a reduced quantum confinement effect but display also a natural geometrical separation between electron and hole.
DOI
10.1007/s11671-010-9688-9
WOS
WOS:000283124800017
Archivio
http://hdl.handle.net/20.500.11767/32732
info:eu-repo/semantics/altIdentifier/scopus/2-s2.0-78049300875
Diritti
metadata only access
Scopus© citazioni
39
Data di acquisizione
Jun 7, 2022
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Web of Science© citazioni
38
Data di acquisizione
Mar 15, 2024
Visualizzazioni
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Data di acquisizione
Apr 19, 2024
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