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  4. Silicon nanocrystals in carbide matrix
 
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2014
Journal Article
Title

Silicon nanocrystals in carbide matrix

Abstract
Ordered silicon nanocrystals in silicon carbide are produced by Plasma Enhanced Chemical Vapor Deposition by means of the multilayer approach followed by annealing at 1100 °C. The crystallization is verified by Raman scattering, X-ray diffraction, Transmission Electron Microscopy, and UV-vis spectroscopy. The conditions for the periodic structure to survive the high temperature annealing and for the SiC barrier to confine the Si crystal growth are examined by energy-filtered transmission electron microscopy and X-ray reflection. The final layout appears to be strongly influenced by the structural features of the as-deposited multilayer. Threshold values of Si-rich carbide sublayer thickness and Si-to-C ratio are identified in order to preserve the ordered structure. The crystallized fraction is observed to be correlated with the total silicon volume fraction. The constraints are examined through the use of ab-initio calculations of matrix-embedded silicon nanocrystals, as well as in terms of existing models for nanocrystal formation, in order to establish the role played by the interface energy on nanocrystal outgrowth, residual amorphous fraction, and continuous crystallization. A parameter space of formation of ordered Si nanocrystals is proposed. The diffusivity of carbon in the crystallized material is evaluated, and estimated to be around 10-16 cm2/s at 1100 °C.
Author(s)
Summonte, Caterina
Allegrezza, Marco
Bellettato, M.
Liscio, F.
Canino, Mariaconcetta
Desalvo, A.
López-Vidrier, Julian
Hernandez, S.
Lopez-Conesa, L.
Estrade, S.
Peiro, F.
Garrido, B.
Löper, Philipp
Schnabel, Manuel
Janz, Stefan  
Guerra, R.
Ossicini, S.
Journal
Solar energy materials and solar cells  
Open Access
DOI
10.1016/j.solmat.2014.05.003
Additional link
Full text
Language
English
Fraunhofer-Institut für Solare Energiesysteme ISE  
Keyword(s)
  • Solarzellen - Entwicklung und Charakterisierung

  • Farbstoff

  • Organische und Neuartige Solarzellen

  • Tandemsolarzellen auf kristallinem Silicium

  • carbide

  • nanocrystals

  • crystallization

  • transformation

  • Superlattice

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