Mobile oxygen in layered nickelates of perovskite-type

Author:

Usenka A. E.1,Kharlamova I. M.2,Makhnach L. V.1,Pankov V. V.1,Korobko E. V.

Affiliation:

1. Belarusian State University

2. A. V. Luikov Heat and Mass Transfer Institute of the National Academy of Sciences of Belarus

Abstract

The influence of the different types of oxygen on the structure and electrical conductivity of the perovskite-type nickelates were investigated. The nickelates La2NiO4+δ, La0,6Sr1,4NiO4–δ, Sr3Al0,75Ni1,25O7–δ were synthesised using the solidstate reaction route. Phase composition was determined by X-ray powder diffraction analysis. The iodometric titration technique was used to specify the oxygen content of the powders. Oxygen desorption and absorption, including oxygen index variation, were investigated by oxygen solid electrolyte coulometry (OSEC). Electroconductive properties of samples were studied by a standard DC four-point method. Utilizing OSEC technique, three mobile and one regular type of oxygen were observed in the perovskite layered nickelates with P/RS and 2P/RS structure. These four types of mobile oxygen differ in the binding energy to the crystal lattice and crystallographic positions. The desorption-sorption processes of various types of mobile oxygen have different effects on the thermal expansion of crystal lattice parameters. The regular oxygen, occupying the apex of octahedron, affects the lattice parameters most prominently. This type of oxygen changes the character of the temperature dependence of specific resistivity sufficiently. Interstitial oxygen does not yield such anomalies. 

Publisher

Publishing House Belorusskaya Nauka

Subject

Inorganic Chemistry,Organic Chemistry,Chemistry (miscellaneous),Analytical Chemistry

Reference16 articles.

1. Vashook V. V., Tolochko S. P., Yushkevich I. I., Makhnach L. V., Kononyuk I. F., Altenburg H., Hauck J, Ullmann H. Oxygen nonstoichiometry and electrical conductivity of the solid solutions La2−xSrxNiOy (0≤ x≤ 0.5). Solid State Ionics, 1998, vol. 110, iss. 3-4, pp. 245–253. https://doi.org/10.1016/S0167-2738(98)00134-9

2. Vashook V. V., Yushkevich I. I., Kokhanovsky L. V., Makhnach L. V., Tolochko S. P., Kononyuk I. F., Ullmann, H., Altenburg, H. Composition and conductivity of some nickelates. Solid State Ionics, 1999, vol. 119, iss. 1-4, pp. 23–30. https://doi.org/10.1016/S0167-2738(98)00478-0

3. Kharlamov I. M., Makhnach L. V., Usenka A. E., Lyakhov A. S., Ivashkevich L. S., Pankov V. V. Ruddlesden-Popper phases Sr3Ni2–xAlxO7–δ and some doped derivatives: Synthesis, oxygen nonstoichiometry and electrical properties. Solid State Ionics, 2018, vol. 324, pp. 241–246. https://doi.org/10.1016/j.ssi.2018.07.016

4. Usenka A. E., Pankov V. V., Vibhu V., Flura A., Grenier J. C., Bassat J. M. Temperature programmed oxygen desorption and sorption processes on Pr2-хLaхNiO4+δ nickelates. ECS Transactions, 2019, vol. 91, no 1, pp. 1341–1353. https://doi.org/10.1149/09101.1341ecst

5. Tarutin A. P., Lyagaeva J. G., Medvedev D. A., Bi L., Yaremchenko A. A. Recent advances in layered Ln2NiO4+d nickelates: fundamentals and prospects of their applications in protonic ceramic fuel and electrolysis cell. Journal of Materiais Chemistry. A, 2021, vol. 91, pp. 154–195. https://doi.org/10.1039/d0ta08132a

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