XPS and NEXAFS Studies of Zn-Doped Bismuth Iron Tantalate Pyrochlore

Author:

Nekipelov Sergey1ORCID,Sivkov Victor1ORCID,Sivkov Danil1,Lebedev Alexey2,Chumakov Ratibor2,Koroleva Aleksandra3,Makeev Boris4ORCID,Zhuk Nadezhda5

Affiliation:

1. Institute of Physics and Mathematics, Komi Science Center UB RAS, Oplesnina St. 4, Syktyvkar 167982, Russia

2. National Research Center, Kurchatov Institute, 1 Akad. Kurchatova Sq., Moscow 123182, Russia

3. Faculty of Physics, Saint Petersburg State University, University Emb. 7/9, St. Petersburg 199034, Russia

4. Institute of Geology, Komi Science Center UB RAS, Pervomaiskaya St. 48, Syktyvkar 167982, Russia

5. Institute of Natural Sciences, Syktyvkar State University, Oktyabrsky Prospect, 55, Syktyvkar 167001, Russia

Abstract

The effect of Zn-doping on the phase composition and optical properties of the Bi2ZnxFe1-xTa2O9.5-Δ (x = 0.3, 0.5, 0.7) was studied. XRD data showed that the samples crystallize in the structural type of pyrochlore (sp. gr.Fd-3m). For all the samples, an admixture of bismuth orthotantalate β-BiTaO4 triclinic modification up to 22.5 wt.% is observed. The content of β-BiTaO4 increases with zinc doping. The unit cell parameter of the pyrochlore phase rises from 10.4878 (x = 0.3) to 10.5154 Å (x = 0.7). The samples are characterized by a porous microstructure with indistinct grain boundaries. Zinc oxide has a sintering effect on ceramics. The charge state of the ions in Bi2ZnxFe1-xTa2O9.5-Δ was investigated by X-ray spectroscopy. NEXAFS and XPS data show that zinc doping does not change the oxidation degree of iron and bismuth ions in pyrochlore. The ions are in the charge states Bi(+3), Fe(+3), Zn(+2). In the Ta4fspectrum, an energy shift of the absorption band towards lower energies by ΔE = 0.5 eV is observed, which is typical for tantalum ions with an effective charge of (+5-δ). With the increase of x(Zn), the Bi 4f7/2 and Bi 4f5/2 bands are observed to shift to lower energies due to the distribution of some Zn(II) ions in the bismuth position.

Funder

Ministry of Science and Higher Education of Russia

Publisher

MDPI AG

Subject

Inorganic Chemistry

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