Relationship between cation arrangement and photocatalytic activity for Sr-Al-Nb-O double perovskite.

Inorg Chem

Department of Molecular and Material Sciences, Interdisciplinary Graduate School of Engineering Sciences, Kyushu University, Kasuga, Fukuoka 816-8580, Japan.

Published: December 2010

AI Article Synopsis

  • The study examined how the arrangement of metal cations in Sr-Al-Nb-O double perovskite (SAN) affects its photocatalytic activity, synthesizing the material at 1400 °C for different durations.
  • Transmission electron microscopy showed SAN particles had both completely ordered (Sr(2)AlNbO(6)) and disordered (SrAl(0.5)Nb(0.5)O(3)) phases, with the ordered phase increasing from 33% to 48% as calcination time extended from 10 to 50 hours.
  • Results indicated that photocatalytic activity for H(2) and O(2) production decreased with longer calcination times,

Article Abstract

The relationship between the photocatalytic activity and the arrangement of metal cations was investigated with Sr-Al-Nb-O double perovskite (SAN) synthesized at 1400 °C for various calcination times using a solid state reaction. Transmission electron microscopic observation revealed that SAN particles had a domain structure of completely B-site ordered (Sr(2)AlNbO(6)) and disordered (SrAl(0.5)Nb(0.5)O(3)) phases. The ordered phase fraction was determined using a newly proposed mixed-phase model for the Rietveld refinement and a method using the relative intensity of the superlattice line of powder X-ray diffraction. It turned out that the mass fraction of the ordered phase in SAN calcined at 1400 °C could be controlled by the calcination time as 33% (10 h), 37% (20 h), 44% (30 h), and 48% (50 h). Photocatalytic activities of SAN for the evolution of H(2) and O(2) respectively from aqueous solutions of methanol and AgF decreased with increasing the calcination time, that is, with increasing the fraction of the ordered phase. These results suggested that the photocatalytic activity of ordered Sr(2)AlNbO(6) should be lower than that of disordered SrAl(0.5)Nb(0.5)O(3). This is practically the first report to reveal the photocatalytic activity of SAN as well as the effect of cation ordering in oxides on the photocatalytic activity.

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Source
http://dx.doi.org/10.1021/ic101208qDOI Listing

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