2019
DOI: 10.1134/s1063785019070137
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Planar Capacitive Structures Based on Ferroelectric Barium Titanate–Stannate Films on Sapphire for Microwave Applications

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(5 citation statements)
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“…(ii) For films deposited in a medium containing 40% oxygen in a gas mixture, the positions of the reflexes correspond to BaSnO 3 with the lattice parameter 4.12 Å, without signs of the presence of a solid solution. The probable cause of the formation of the dielectric barium stannate may be the presence of impurity phases of titanium oxides on the substrate, the possible positions of XRD reflexes from which are marked in Figure 1 with red and blue dotted lines (PDF 21-1272 TiO 2 Anatase; PDF 8-117 TiO; PDF 29-1360 TiO 2 Brookite; PDF 34-133 BaTi 2 O 5 ), similar to [34,38]. (iii) The reflexes from the BTS phase in Figure 1 are significantly shifted towards large angles when the oxygen content in the gas medium decreases from 40 to 20%, that for polycrystalline samples means a change in the composition of the solid solution (the ratio of Ti and Sn) according to the Vegard's law (see the inset in Figure 1) [42].…”
Section: Resultsmentioning
confidence: 86%
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“…(ii) For films deposited in a medium containing 40% oxygen in a gas mixture, the positions of the reflexes correspond to BaSnO 3 with the lattice parameter 4.12 Å, without signs of the presence of a solid solution. The probable cause of the formation of the dielectric barium stannate may be the presence of impurity phases of titanium oxides on the substrate, the possible positions of XRD reflexes from which are marked in Figure 1 with red and blue dotted lines (PDF 21-1272 TiO 2 Anatase; PDF 8-117 TiO; PDF 29-1360 TiO 2 Brookite; PDF 34-133 BaTi 2 O 5 ), similar to [34,38]. (iii) The reflexes from the BTS phase in Figure 1 are significantly shifted towards large angles when the oxygen content in the gas medium decreases from 40 to 20%, that for polycrystalline samples means a change in the composition of the solid solution (the ratio of Ti and Sn) according to the Vegard's law (see the inset in Figure 1) [42].…”
Section: Resultsmentioning
confidence: 86%
“…Thus, the perovskite crystal structure of barium-strontium titanate without secondary phases is confidently formed in a purely oxygen medium on sapphire, silicon carbide, magnesium oxide, etc. On the other hand, it is noted in [34,38] that attempts to form FE film with substitution of Ti by Zr or Sn atoms on dielectric substrates in an oxygen-rich gas medium lead to the formation of a multiphase structure consisting of purely dielectric barium zirconates or barium stannates and secondary phases with a high content of titanium-simple oxides and barium polytitanates (BaTi 2 O 5 , BaTi 5 O 11 , etc.). This can be explained by the kinetics of Ti oxidation in a medium with a high oxygen content, when the rate of formation of secondary phases of titanium significantly exceeds the rate of formation of ferroelectric BaTiO 3 .…”
Section: Resultsmentioning
confidence: 99%
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