Study of crystallite size and strain as a function of morphological evolution in zinc oxide powder obtained from hydroxycarbonate precursor


Autoria(s): Sigoli, Fernando Aparecido; De Oliveira Paiva-Santos, Carlos; Jafelicci Júnior, Miguel; Davolos, Marian Rosaly
Contribuinte(s)

Universidade Estadual Paulista (UNESP)

Data(s)

27/05/2014

27/05/2014

01/09/2001

Resumo

In this work, zinc oxide samples were obtained from hydroxycarbonate by thermal decomposition at 300°C. Zinc hydroxycarbonate samples were produced by homogeneous precipitation over different periods of time. The method used to obtain zinc oxide produces different morphologies as a function of the precursor precipitation time. Among the obtained particle shapes were porous spherical aggregates, spherulitic needle aggregates, and single acicular particles. This work investigated spherulitic needle-aggregate formation and the correlation among morphology, domain size, and microstrain. Transmission electron microscopy data revealed that the acicular particles that form the spherulitic needle aggregates consist of nanometer crystallites. Apparent crystallite size and microstrain in the directions perpendicular to (h00), (h0l), (hk0), and (00l) planes were invariable as a function of precursor precipitation time. From the results, it was possible to conclude that the precursor precipitation period directly influenced the morphology of the zinc oxide but did not influence average crystallite size and microstrain for ZnO samples. Therefore, using this route, it was possible to prepare zinc oxide with different morphologies without microstructural alterations. © 2001 International Centre for Diffraction Data.

Formato

153-159

Identificador

http://dx.doi.org/10.1154/1.1376706

Powder Diffraction, v. 16, n. 3, p. 153-159, 2001.

0885-7156

1945-7413

http://hdl.handle.net/11449/66574

10.1154/1.1376706

WOS:000171122400004

2-s2.0-0035458229

2-s2.0-0035458229.pdf

Idioma(s)

eng

Relação

Powder Diffraction

Direitos

closedAccess

Palavras-Chave #Crystallite size #Morphology #Strain #Zinc oxide
Tipo

info:eu-repo/semantics/article