Effect of the degree of doping on the size and magnetic properties of nanocrystals La1 – xZnxFeO3 synthesized by the sol–gel method
- Авторы: Knurova M.V.1, Mittova I.Y.1, Perov N.S.2, Al’myasheva O.V.3, Tien N.A.4, Mittova V.O.5, Bessalova V.V.2, Viryutina E.L.1
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Учреждения:
- Voronezh State University
- Lomonosov Moscow State University
- Ul’yanov (Lenin) LETI St. Petersburg State Electrotechnical University
- Ho Chi Min City University of Education
- Burdenko Voronezh State Medical University
- Выпуск: Том 62, № 3 (2017)
- Страницы: 281-287
- Раздел: Synthesis and Properties of Inorganic Compounds
- URL: https://journal-vniispk.ru/0036-0236/article/view/167429
- DOI: https://doi.org/10.1134/S0036023617030081
- ID: 167429
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Аннотация
Nanopowders La1–xZnxFeO3 (nominal degree of doping xnom = 0, 0.05, 0.075, 0.1, 0.15, 0.2, 0.3, and 0.4) were synthesized by the sol–gel method using aqueous ammonia as a precipitator and were then annealed at 950°C for 60 min. From the data of X-ray powder diffraction analysis and local electron probe microanalysis, the maximum actual limit of doping of lanthanum ferrite with zinc was determined: x = 0.072. The dependence of the particle size on the Zn2+ content was found to be nonmonotonic. The magnetic characteristics (specific magnetization J, coercivity Hc, and magnetic susceptibility χ) of samples at temperatures of 300 and 100 K in fields of up to 1300 kA/m. It was shown that, with increasing degree of doping, J increases from 0.188 A m2/kg (at x = 0) to 0.245 A m2/kg (at x = 0.072), and χ varies nonmonotonically from 11.5 × 10–6 (at x = 0) to 15.3 × 10–6 (at x = 0.072) (at 300 K). With decreasing measurement temperature to 100 K, the magnetization and susceptibility monotonically increase.
Об авторах
M. Knurova
Voronezh State University
Автор, ответственный за переписку.
Email: cnurova2010@yandex.ru
Россия, Universitetskaya pl. 1, Voronezh, 394018
I. Mittova
Voronezh State University
Email: cnurova2010@yandex.ru
Россия, Universitetskaya pl. 1, Voronezh, 394018
N. Perov
Lomonosov Moscow State University
Email: cnurova2010@yandex.ru
Россия, Leninskie gory 1, stroenie 2, Moscow, 119991
O. Al’myasheva
Ul’yanov (Lenin) LETI St. Petersburg State Electrotechnical University
Email: cnurova2010@yandex.ru
Россия, ul. professora Popova 5, St. Petersburg, 197376
Nguyen Tien
Ho Chi Min City University of Education
Email: cnurova2010@yandex.ru
Вьетнам, 280 An Dương Vương Street, Ward 4, District 5, Ho Chi Min City
V. Mittova
Burdenko Voronezh State Medical University
Email: cnurova2010@yandex.ru
Россия, ul. Studencheskaya 10, Voronezh, 394036
V. Bessalova
Lomonosov Moscow State University
Email: cnurova2010@yandex.ru
Россия, Leninskie gory 1, stroenie 2, Moscow, 119991
E. Viryutina
Voronezh State University
Email: cnurova2010@yandex.ru
Россия, Universitetskaya pl. 1, Voronezh, 394018
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