Synthesis, characterization, and electronic structure studies of cubic Bi1.5ZnTa1.5O7 for photocatalytic applications


Autoria(s): Perenlei, Ganchimeg; Alarco, Jose A.; Talbot, Peter C.; Martens, Wayde N.
Data(s)

2015

Resumo

Bi1.5ZnTa1.5O7 (BZT) has been synthesized using an alkoxide based sol-gel reaction route. The evolution of the phases produced from the alkoxide precursors and their properties have been characterized as function of temperature using a combination of thermogravimetric analysis (TGA) coupled with mass spectrometry (MS), infrared emission spectrometry (IES), X-ray diffraction (XRD), ultraviolet and visible (UV-Vis) spectroscopy, Raman spectroscopy, and N2 adsorption/desorption isotherms. The lowest sintering temperature (600∘C) to obtain phase pure BZT powders with high surface area (14.5m2/g) has been determined from the thermal decomposition and phase analyses.The photocatalytic activity of the BZT powders has been tested for the decolorization of organic azo-dye and found to be photoactive under UV irradiation.The electronic band structure of the BZT has been investigated using density functional theory (DFT) calculations to determine the band gap energy (3.12 eV) and to compare it with experimental band gap (3.02 eV at 800∘C) from optical absorptionmeasurements. An excellent match is obtained for an assumption of Zn cation substitutions at specifically ordered sites in the BZT structure.

Formato

application/pdf

Identificador

http://eprints.qut.edu.au/89986/

Publicador

Hindawi Publishing Corporation

Relação

http://eprints.qut.edu.au/89986/1/Photoenergy%20349030%20BZT.pdf

DOI:10.1155/2015/349030

Perenlei, Ganchimeg, Alarco, Jose A., Talbot, Peter C., & Martens, Wayde N. (2015) Synthesis, characterization, and electronic structure studies of cubic Bi1.5ZnTa1.5O7 for photocatalytic applications. International Journal of Photoenergy, 2015, Article ID 349030.

Direitos

Copyright 2015 Ganchimeg Perenlei et al

This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.

Fonte

School of Chemistry, Physics & Mechanical Engineering; Institute for Future Environments; Science & Engineering Faculty

Palavras-Chave #030000 CHEMICAL SCIENCE #030200 INORGANIC CHEMISTRY #030207 Transition Metal Chemistry #030700 THEORETICAL AND COMPUTATIONAL CHEMISTRY #Bismuth zinc tantalum oxide #Photocatalysis #Band structure #Density functional theory #Optical absorption
Tipo

Journal Article