Title of article :
Density functional study of structures and mechanical properties of Y-doped α-SiAlONs
Author/Authors :
Benco، نويسنده , , L. and Hafner، نويسنده , , J. and Lences، نويسنده , , Z. and Sajgalik، نويسنده , , P.، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2008
Pages :
8
From page :
995
To page :
1002
Abstract :
A 2 × 2 × 1 supercell of α-Si3N4 is used to model Y-doped α-SiAlONʹs (silicoalumino oxonitrides). Ab initio total energy calculations are performed at the DFT (GGA) level. A full relaxation of atomic positions is performed for stoichiometric α-Si3N4 and for a series of substituted structures with concentrations of Y, Al and O increasing up to the composition Y0.5Si9.5Al2.5O1.0N15.0, similar to the observed solubility limits. The avoidance of neighboring AlX4 (X = N,O) tetrahedra in highly doped structures indicates that the distribution of Al atoms in the framework of α-SiAlONʹs obeys the same Loewenstein rule as in aluminosilicate zeolite structures. An increase of the lattice parameters and cell volumes is observed with increasing degree of the doping. Changes are more pronounced for the insertion of Y than for Si-N/Al-O substitution. An introduction of a Y3+ cation into the interstitial position in the cage, however, causes a local contraction of the structure. Via the contraction a more efficient Y–N bonding is formed, leading to the stabilization of the Y-doped structure. The pronounced increase of the cell volume and the lattice parameters with Y-doping is due to three framework Al/Si framework substitutions compensating the extraframework Y3+ cation. The calculated bulk modulus (B0) ranges from 223 GPa for pure α-Si3N4 to 197 GPa for Y0.5Si9.5Al2.5O1.0N15.0. The slope of the decrease of B0 with the degree of doping depends on the Y-content. For constant concentration of Y an increasing content of O causes a linear decrease of B0.
Keywords :
Electronic structure , mechanical properties , Y-doped ?-SiAlONs , Density functional theory simulations
Journal title :
Journal of the European Ceramic Society
Serial Year :
2008
Journal title :
Journal of the European Ceramic Society
Record number :
1409370
Link To Document :
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