Polymorphic-induced transformations in CaTa2O6 single-crystal fibers obtained by laser-heated pedestal growth


Autoria(s): Almeida, R. M.; Matinaga, F. M.; Andreeta, Marcello Rubens Barsi; Hernandes, Antonio Carlos; Dias, A.; Moreira, R. L.
Contribuinte(s)

UNIVERSIDADE DE SÃO PAULO

Data(s)

10/06/2014

10/06/2014

01/11/2013

Resumo

Calcium tantalite (CaTa2O6) single crystal fibers were obtained by the laser-heated pedestal growth method (LHPG). At room temperature, this material can present three polymorphic modifications. The rapid crystallization inherent to the LHPG method produced samples within the Pm3 space group, with some chemical disorder. In order to check for polymorphic-induced transformations, the CaTa2O6 fibers have been submitted to different thermal treatments and investigated by micro-Raman spectroscopy. For short annealing times (15 min) at 1200 °C, the cubic modification was maintained, though with an improved crystalline quality, as evidenced by the enhanced inelastic scattered intensity (by ca. 250%) and narrowing of Raman bands. The polarized Raman spectra respected very well the predicted symmetries and the selection rules for this cubic modification. On the other hand, long annealing times (24 h) at 1200 °C led to a complete (irreversible) polymorphic transformation. The Raman bands became still more intense (ca. 15 times larger than for the as-grown fibers), narrower, and several new modes appeared. Also, the spectra became unpolarized, demonstrating a polycrystalline nature of the transformed crystals. The observed Raman modes could be fully assigned to an orthorhombic modification of CaTa2O6 belonging to the Pnma space group.

CNPq

CAPES

FAPESP

FAPEMIG

Identificador

Crystal Growth and Design, Washington, DC : American Chemical Society, v. 13, n. 12, p. 5289-5294, Nov. 2013

1528-7483

http://www.producao.usp.br/handle/BDPI/45356

10.1021/cg401078z

Idioma(s)

eng

Publicador

American Chemical Society - ACS

Washington, DC

Relação

Crystal Growth and Design

Direitos

restrictedAccess

Copyright American Chemical Society

Palavras-Chave #CRESCIMENTO DE CRISTAIS #POLIMORFISMO #LASER
Tipo

article

original article

publishedVersion