Please use this identifier to cite or link to this item: http://repository.aaup.edu/jspui/handle/123456789/1331
Title: Structural, Optical and Electrical Properties of Bi1.5Zn0.92Nb1.5-6x/5Wx O6.92 Pyrochlore Ceramics
Authors: Qasrawi, Atef$AAUP$Palestinian
Abdalghafour, Mais$AAUP$Palestinian
Mergen, Ayhan$Other$Other
Keywords: Bi1.5Zn0.92Nb1.5-6x/5Wx O6.92, ceramics, XRD, resistivity, band gap.
Issue Date: 13-Feb-2021
Publisher: Materials Research
Citation: DOI: https://doi.org/10.1590/1980-5373-MR-2020-0501
Series/Report no.: 1516-1439;e20200501
Abstract: Herein, the structural, morphological, compositional, optical, electrical and dielectric properties of Bi1.5Zn0.92Nb1.5-6x/5Wx O6.92 (BZN) solid solutions are reported. Tungsten substituted BZN ceramics which are fabricated by the solid state reaction technique exhibited solubility limits at substitution level below x=0.18. Remarkable engineering in the structural, optical, electrical and dielectric properties of the pyrochlore ceramics is achieved via W substitution. Namely, shrinkage in both of the lattice parameters and in the energy band gap accompanied with decrease in the microstrain, in the dielectric constant and in the electrical resistivity is observed upon increasing the W content below the solubility limit. The increase in the W content in the BZN ceramics enhances the densification of the pyrochlore and leads to higher light absorbability and larger crystallites growth. The temperature dependent electrical resistivity measurements has also shown that the pyrochlore exhibit thermal stability below 380 K.
URI: http://repository.aaup.edu/jspui/handle/123456789/1331
ISSN: DOI: https://doi.org/10.1590/1980-5373-MR-2020-0501
Appears in Collections:Faculty & Staff Scientific Research publications

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