Thermopower of magnetoresistive composites based on La0,7Sr0,3MnO3

The paper studies the dependence of the magnetoresistance and Seebeck coefficient of the composite magnetoresistive composition near the percolation threshold of 80%La0,7Sr0,3MnO3/20%GeO2 on the constant magnetic field strength up to 3,8 kOe and temperature in the range from 25°C to 150°C. The 80%La...

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Main Authors: Yu..V. Kabirov, A.A. Utoplov, N.V. Lyanguzov, E.N. Sidorenko, N.V. Prutsakova, E.V. Chebanova
Format: Article
Language:Russian
Published: Tver State University 2024-12-01
Series:Физико-химические аспекты изучения кластеров, наноструктур и наноматериалов
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Online Access:https://physchemaspects.ru/2024/doi-10-26456-pcascnn-2024-16-164/?lang=en
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author Yu..V. Kabirov
A.A. Utoplov
N.V. Lyanguzov
E.N. Sidorenko
N.V. Prutsakova
E.V. Chebanova
author_facet Yu..V. Kabirov
A.A. Utoplov
N.V. Lyanguzov
E.N. Sidorenko
N.V. Prutsakova
E.V. Chebanova
author_sort Yu..V. Kabirov
collection DOAJ
description The paper studies the dependence of the magnetoresistance and Seebeck coefficient of the composite magnetoresistive composition near the percolation threshold of 80%La0,7Sr0,3MnO3/20%GeO2 on the constant magnetic field strength up to 3,8 kOe and temperature in the range from 25°C to 150°C. The 80%La0,7Sr0,3MnO3/20%GeO2 samples have the p-type conductivity, a the positive sign of the Seebeck coefficient and a dielectric character of the change in the electrical resistance with temperature. The activation energy of such compositions is of about 0,35 eV. The magnetoresistance of such a composition decreases with an increase in the temperature difference between the hot and cold edges and disappears in the region of the phase transition temperatures of 90°C. It was found that in a constant external magnetic field of 3,8 kOe, a decrease in the Seebeck coefficient of the 80%La0,7Sr0,3MnO3/20%GeO2 compositions by 11% is observed at a temperature difference of 10 K. The dependence of the Seebeck coefficient on the magnetic field decreases with an increase in the hot edge temperature and also disappears in the temperature range of 90°C, which is associated with the ferromagnetic-paramagnetic phase transition of lanthanum manganite La0,7Sr0,3MnO3 and the suppression of spin-dependent electron tunneling.
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2658-4360
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publishDate 2024-12-01
publisher Tver State University
record_format Article
series Физико-химические аспекты изучения кластеров, наноструктур и наноматериалов
spelling doaj-art-9b925ebb6b5f41348912490c5aa76e4d2025-08-20T01:57:32ZrusTver State UniversityФизико-химические аспекты изучения кластеров, наноструктур и наноматериалов2226-44422658-43602024-12-011616417010.26456/pcascnn/2024.16.164Thermopower of magnetoresistive composites based on La0,7Sr0,3MnO3Yu..V. Kabirov0A.A. Utoplov1N.V. Lyanguzov2E.N. Sidorenko3N.V. Prutsakova4E.V. Chebanova5Southern Federal UniversitySouthern Federal UniversitySouthern Federal UniversitySouthern Federal UniversityDon State Technical UniversityDon State Technical UniversityThe paper studies the dependence of the magnetoresistance and Seebeck coefficient of the composite magnetoresistive composition near the percolation threshold of 80%La0,7Sr0,3MnO3/20%GeO2 on the constant magnetic field strength up to 3,8 kOe and temperature in the range from 25°C to 150°C. The 80%La0,7Sr0,3MnO3/20%GeO2 samples have the p-type conductivity, a the positive sign of the Seebeck coefficient and a dielectric character of the change in the electrical resistance with temperature. The activation energy of such compositions is of about 0,35 eV. The magnetoresistance of such a composition decreases with an increase in the temperature difference between the hot and cold edges and disappears in the region of the phase transition temperatures of 90°C. It was found that in a constant external magnetic field of 3,8 kOe, a decrease in the Seebeck coefficient of the 80%La0,7Sr0,3MnO3/20%GeO2 compositions by 11% is observed at a temperature difference of 10 K. The dependence of the Seebeck coefficient on the magnetic field decreases with an increase in the hot edge temperature and also disappears in the temperature range of 90°C, which is associated with the ferromagnetic-paramagnetic phase transition of lanthanum manganite La0,7Sr0,3MnO3 and the suppression of spin-dependent electron tunneling. https://physchemaspects.ru/2024/doi-10-26456-pcascnn-2024-16-164/?lang=enseebeck coefficientmagnetoresistive compositeconstant magnetic fieldlanthanum- strontium manganitepercolation
spellingShingle Yu..V. Kabirov
A.A. Utoplov
N.V. Lyanguzov
E.N. Sidorenko
N.V. Prutsakova
E.V. Chebanova
Thermopower of magnetoresistive composites based on La0,7Sr0,3MnO3
Физико-химические аспекты изучения кластеров, наноструктур и наноматериалов
seebeck coefficient
magnetoresistive composite
constant magnetic field
lanthanum- strontium manganite
percolation
title Thermopower of magnetoresistive composites based on La0,7Sr0,3MnO3
title_full Thermopower of magnetoresistive composites based on La0,7Sr0,3MnO3
title_fullStr Thermopower of magnetoresistive composites based on La0,7Sr0,3MnO3
title_full_unstemmed Thermopower of magnetoresistive composites based on La0,7Sr0,3MnO3
title_short Thermopower of magnetoresistive composites based on La0,7Sr0,3MnO3
title_sort thermopower of magnetoresistive composites based on la0 7sr0 3mno3
topic seebeck coefficient
magnetoresistive composite
constant magnetic field
lanthanum- strontium manganite
percolation
url https://physchemaspects.ru/2024/doi-10-26456-pcascnn-2024-16-164/?lang=en
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AT nvlyanguzov thermopowerofmagnetoresistivecompositesbasedonla07sr03mno3
AT ensidorenko thermopowerofmagnetoresistivecompositesbasedonla07sr03mno3
AT nvprutsakova thermopowerofmagnetoresistivecompositesbasedonla07sr03mno3
AT evchebanova thermopowerofmagnetoresistivecompositesbasedonla07sr03mno3