Literature DB >> 20953649

Quantum chemical modeling of perovskite: An investigation of piezoelectricity in ferrite of yttrium.

Fábio Augusto M de Lira1, Márcio de Souza Farias, Antonio Florêncio de Figueiredo, Fábio dos Santos Gil, Marcos Antonio B dos Santos, Bruno Veiga Malheiros, João Elias V Ferreira, José Ciríaco Pinheiro, Oswaldo Treu-Filho, Rogério Toshiaki Kondo.   

Abstract

In a previous article, we used Hartree-Fock (HF) theory to study the piezoelectricity in BaTiO₃. In this paper, we applied the Douglas-Kroll-Hess second order scalar relativistic method to investigate the possible piezoelectric properties in the perovskite YFeO₃ structure, which has not yet been studied experimentally. The 30s20p13d and 31s21p17d Gaussian basis sets for the Fe (⁵D) and Y (²D) atoms, respectively, were built with the Generator Coordinate HF method. After contraction to [13s7p5d] and [13s8p7d], in combination with the 20s14p/6s4p basis set for the O (³P) atom from literature, they had their quality evaluated using calculations of the total and the orbital energies for the ²FeO⁺¹ and ¹YO⁺¹ fragments. The dipole moment, the total energy, and the total atomic charges in YFeO₃ in C(s) space group were calculated. The results and the analysis lead us to believe that the perovskite YFeO₃ does not present piezoelectric properties.

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Year:  2010        PMID: 20953649     DOI: 10.1007/s00894-010-0797-2

Source DB:  PubMed          Journal:  J Mol Model        ISSN: 0948-5023            Impact factor:   1.810



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