INTERACTION OF THE LANTHANA, YTTRIA WITH ITERBIY AT TEMPERATURE 1100 °C

Using the methods of physicochemical analysis (XRD, petrography, SEM, X–ray microprobe analysis) phase equilibria were firstly investigated in the ternary system La2O3–Y2O3–Yb2O3 at 1100 °C. The specimens were prepared in step 1-5 mol % from nitrate solutions with their subsequent evaporation and de...

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Main Author: O. V. Chudinovych
Format: Article
Language:English
Published: Odessa I. I. Mechnikov National University 2019-05-01
Series:Vìsnik Odesʹkogo Nacìonalʹnogo Unìversitetu: Hìmìâ
Subjects:
Online Access:http://heraldchem.onu.edu.ua/article/view/169235
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spelling doaj-f922212abf5246b9a7a41eed03b554e42021-01-20T11:23:59ZengOdessa I. I. Mechnikov National University Vìsnik Odesʹkogo Nacìonalʹnogo Unìversitetu: Hìmìâ2304-09472414-59632019-05-01242(70)849510.18524/2304-0947.2019.2(70).169235169235INTERACTION OF THE LANTHANA, YTTRIA WITH ITERBIY AT TEMPERATURE 1100 °CO. V. Chudinovych0Інститут проблем матеріалознавства ім. І. М. Францевича НАН УкраїниUsing the methods of physicochemical analysis (XRD, petrography, SEM, X–ray microprobe analysis) phase equilibria were firstly investigated in the ternary system La2O3–Y2O3–Yb2O3 at 1100 °C. The specimens were prepared in step 1-5 mol % from nitrate solutions with their subsequent evaporation and decomposition at 800 °C for 2 h. Powders were pressed at 10 MPa into pellets of 5 mm in diameter and 4 mm in height. To study phase relationships in the ternary system La2О3 – Y2O3 – Yb2О3 thermal treatment of as-prepared samples was carried at 1100 °С. X-ray diffraction analysis of the samples was performed by a powder method at room temperature (CuKa radiation). The scanning speed of 0.05-0.1 ° 2q/min was employed in the 15° to 90 ° 2q range. The effective precision of the measurements was ± 0.0002 nm. Lattice parameters were refined by least squares fitting using the LATTIC program. The crystal-optic characteristics of the obtained phases were determined under polarized microscopes “МІН-8” and Leica. The refraction indісes were measured in immersion liquids (solution of arsenic tribromide in methylene iodide or alloys of sulfur with selenium) with accuracy ± 0.02. The solid solutions based on various polymorphous forms of constituent phases and ordered phase with a structure of the perovskite-type of LaYO3 (LaYbO3) were revealed in the system. The boundaries of mutual solubility and concentration dependences the lattice parameters for all phases have been determined. The isothermal sections of the phase diagrams for the La2O3–Y2O3–Yb2O3 systems at 1100°C are characterized by the presence of one three-phase (B +C + R), four single-phase (A- La2O3, B- La2O3, R, C- Y2O3 (Yb2O3)) and two-phase (A + B, B+ R, C + R, B + C) regions. The solid solutions are formed by the mechanism of the isovalent substitution. The stability of ordered phases and solid solutions are determined by the dimensional factor : in the LaYO3, the large size ions replace La3+ ions, the smaller ions of the cerium series substitute both Y3+ and La3+, where as all the mentioned rare earth ions may be replaced by Y3+ ions. An ordered R-phase in the ternary system exists in the wider range of concentrations than in the binary system.http://heraldchem.onu.edu.ua/article/view/169235фазові рівновагиоксид лантануоксид ітріюоксид ітербію
collection DOAJ
language English
format Article
sources DOAJ
author O. V. Chudinovych
spellingShingle O. V. Chudinovych
INTERACTION OF THE LANTHANA, YTTRIA WITH ITERBIY AT TEMPERATURE 1100 °C
Vìsnik Odesʹkogo Nacìonalʹnogo Unìversitetu: Hìmìâ
фазові рівноваги
оксид лантану
оксид ітрію
оксид ітербію
author_facet O. V. Chudinovych
author_sort O. V. Chudinovych
title INTERACTION OF THE LANTHANA, YTTRIA WITH ITERBIY AT TEMPERATURE 1100 °C
title_short INTERACTION OF THE LANTHANA, YTTRIA WITH ITERBIY AT TEMPERATURE 1100 °C
title_full INTERACTION OF THE LANTHANA, YTTRIA WITH ITERBIY AT TEMPERATURE 1100 °C
title_fullStr INTERACTION OF THE LANTHANA, YTTRIA WITH ITERBIY AT TEMPERATURE 1100 °C
title_full_unstemmed INTERACTION OF THE LANTHANA, YTTRIA WITH ITERBIY AT TEMPERATURE 1100 °C
title_sort interaction of the lanthana, yttria with iterbiy at temperature 1100 °c
publisher Odessa I. I. Mechnikov National University
series Vìsnik Odesʹkogo Nacìonalʹnogo Unìversitetu: Hìmìâ
issn 2304-0947
2414-5963
publishDate 2019-05-01
description Using the methods of physicochemical analysis (XRD, petrography, SEM, X–ray microprobe analysis) phase equilibria were firstly investigated in the ternary system La2O3–Y2O3–Yb2O3 at 1100 °C. The specimens were prepared in step 1-5 mol % from nitrate solutions with their subsequent evaporation and decomposition at 800 °C for 2 h. Powders were pressed at 10 MPa into pellets of 5 mm in diameter and 4 mm in height. To study phase relationships in the ternary system La2О3 – Y2O3 – Yb2О3 thermal treatment of as-prepared samples was carried at 1100 °С. X-ray diffraction analysis of the samples was performed by a powder method at room temperature (CuKa radiation). The scanning speed of 0.05-0.1 ° 2q/min was employed in the 15° to 90 ° 2q range. The effective precision of the measurements was ± 0.0002 nm. Lattice parameters were refined by least squares fitting using the LATTIC program. The crystal-optic characteristics of the obtained phases were determined under polarized microscopes “МІН-8” and Leica. The refraction indісes were measured in immersion liquids (solution of arsenic tribromide in methylene iodide or alloys of sulfur with selenium) with accuracy ± 0.02. The solid solutions based on various polymorphous forms of constituent phases and ordered phase with a structure of the perovskite-type of LaYO3 (LaYbO3) were revealed in the system. The boundaries of mutual solubility and concentration dependences the lattice parameters for all phases have been determined. The isothermal sections of the phase diagrams for the La2O3–Y2O3–Yb2O3 systems at 1100°C are characterized by the presence of one three-phase (B +C + R), four single-phase (A- La2O3, B- La2O3, R, C- Y2O3 (Yb2O3)) and two-phase (A + B, B+ R, C + R, B + C) regions. The solid solutions are formed by the mechanism of the isovalent substitution. The stability of ordered phases and solid solutions are determined by the dimensional factor : in the LaYO3, the large size ions replace La3+ ions, the smaller ions of the cerium series substitute both Y3+ and La3+, where as all the mentioned rare earth ions may be replaced by Y3+ ions. An ordered R-phase in the ternary system exists in the wider range of concentrations than in the binary system.
topic фазові рівноваги
оксид лантану
оксид ітрію
оксид ітербію
url http://heraldchem.onu.edu.ua/article/view/169235
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