Four SiO2 polymorphs (alpha-quartz, alpha-cristobalite, alpha-tridymite, and coesite) hare been studied by periodic ab initio methods and by atomistic potentials. The former approach is based on all-electron localized basis sets (atomic orbitals) and on three different Hamiltonians: Hartree-Fock(HF), density functional theory in the local-density approximation (LDA), and density functional theory including gradient corrections (B3-LYP). The semiclassical approach uses interatomic potentials parametrized either on empirical observables or on ab initio theoretical properties. Full structure optimizations have been carried out, and phase transition energies derived; the results are compared with experimental data and with previous theoretical values obtained by plane-wave-pseudopotential techniques. HF and LDA structural results are slightly better than those for B3-LYP, whereas the order of performance is reversed for the relative stability of polymorphs. The quality of semiclassical data is analyzed and discussed.

Catti, M., Civalleri, B., Ugliengo, P. (2000). Structure and energetics of SiO2 polymorphs by quantum-mechanical and semiclassical approaches. JOURNAL OF PHYSICAL CHEMISTRY. B, CONDENSED MATTER, MATERIALS, SURFACES, INTERFACES & BIOPHYSICAL, 104(31), 7259-7265 [10.1021/jp000160x].

Structure and energetics of SiO2 polymorphs by quantum-mechanical and semiclassical approaches

CATTI, MICHELE;
2000

Abstract

Four SiO2 polymorphs (alpha-quartz, alpha-cristobalite, alpha-tridymite, and coesite) hare been studied by periodic ab initio methods and by atomistic potentials. The former approach is based on all-electron localized basis sets (atomic orbitals) and on three different Hamiltonians: Hartree-Fock(HF), density functional theory in the local-density approximation (LDA), and density functional theory including gradient corrections (B3-LYP). The semiclassical approach uses interatomic potentials parametrized either on empirical observables or on ab initio theoretical properties. Full structure optimizations have been carried out, and phase transition energies derived; the results are compared with experimental data and with previous theoretical values obtained by plane-wave-pseudopotential techniques. HF and LDA structural results are slightly better than those for B3-LYP, whereas the order of performance is reversed for the relative stability of polymorphs. The quality of semiclassical data is analyzed and discussed.
Articolo in rivista - Articolo scientifico
silica polymorphs; phase stability; ab initio calculations
English
10-ago-2000
104
31
7259
7265
none
Catti, M., Civalleri, B., Ugliengo, P. (2000). Structure and energetics of SiO2 polymorphs by quantum-mechanical and semiclassical approaches. JOURNAL OF PHYSICAL CHEMISTRY. B, CONDENSED MATTER, MATERIALS, SURFACES, INTERFACES & BIOPHYSICAL, 104(31), 7259-7265 [10.1021/jp000160x].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/10281/31532
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