Please use this identifier to cite or link to this item: http://elar.urfu.ru/handle/10995/82494
Title: Spin-state transition in the layered barium cobaltite derivatives and their thermoelectric properties
Authors: Klyndyuk, A. I.
Chizhova, E. A.
Shevchenko, S. V.
Issue Date: 2020
Publisher: Уральский федеральный университет
Citation: Klyndyuk A. I. Spin-state transition in the layered barium cobaltite derivatives and their thermoelectric properties / A. I. Klyndyuk, E. A. Chizhova, S. V. Shevchenko // Chimica Techno Acta. — 2020. — Vol. 7, No. 1. — P. 26–33.
Abstract: Ba1.9Me0.1Co9O14 (Me = Ba, Sr, Ca) (BCO) layered cobaltites were prepared by means of solid-state reactions method. Crystal structure, microstructure, thermal expansion, electrical conductivity, and thermo-EMF for the obtained oxides were studied; the values of their linear thermal expansion coefficient, activation energy of electrical transport, and power factor values were calculated. It was found that BCO are p-type semiconductors, in which the spin-state transition occurs within 460–700 K temperature interval due to change in spin state of cobalt ions, which accompanied the sharp increase in electrical conductivity, activation energy of electrical conductivity, and linear thermal expansion coefficient, while thermo-EMF coefficient decreased. Partial substitution of barium by strontium or calcium in BCO leads to the increase in spin-state transition temperature and electrical conductivity of the samples, and, at the same time, thermo-EMF coefficient; consequently, their power factor values decrease.
Keywords: LAYERED BARIUM COBALTITE
SPIN-STATE TRANSITION
THERMAL EXPANSION
ELECTRICAL CONDUCTIVITY
THERMO-EMF
POWER FACTOR
URI: http://elar.urfu.ru/handle/10995/82494
RSCI ID: https://www.elibrary.ru/item.asp?id=42806838
ISSN: 2409-5613 (Print)
2411-1414 (Online)
DOI: 10.15826/chimtech.2020.7.1.04
Sponsorship: This work was carried out in the frame of State Program of Scientific Investigations «Physical materials science, new materials and technologies» (subprogram «Materials science and technologies of materials», task 1.55).
Origin: Chimica Techno Acta. 2020. Vol. 7. № 1
Appears in Collections:Chimica Techno Acta

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