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2017
DOI: 10.1007/s10948-017-4311-2
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Peculiarities of Magnetic Behavior of CuO Nanoparticles Produced by Plasma-Arc Synthesis in a Wide Temperature Range

Abstract: Copper oxide nanoparticles, produced by direct plasmochemical synthesis in a lowpressure arc discharge plasma, show a wide variety of magnetic properties depending on the strength of the external magnetic field and the temperature. At low strength of the field and throughout the studied temperature range the ferromagnetic state dominates. This state is caused by disordering of the spins on the surface of the nanoparticles. At high strength of the field and under the temperatures of less than 200 K, nanoparticl… Show more

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Cited by 19 publications
(12 citation statements)
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“…4), and that the size of the nanostructured volume formation is d = 30 nm, we obtain a value for the effective magnetic anisotropy constant, K eff = 0.27•10 4 erg/cm 3 . This value is more than an order of magnitude smaller than the constant of bulk nickel ferrite, which isequal to K = 6.2•10 4 erg/cm 3 [15,16].…”
Section: Results and Analysismentioning
confidence: 99%
“…4), and that the size of the nanostructured volume formation is d = 30 nm, we obtain a value for the effective magnetic anisotropy constant, K eff = 0.27•10 4 erg/cm 3 . This value is more than an order of magnitude smaller than the constant of bulk nickel ferrite, which isequal to K = 6.2•10 4 erg/cm 3 [15,16].…”
Section: Results and Analysismentioning
confidence: 99%
“…Экспериментальная установка и зависимость свойств порошка от условий распыления подробно обсуждаются в [15][16][17][18] Оптические измерения проводились на спектрофотометре Perkin Elmer Lambda 950 с получением спектров пропускания. Образцы для исследования были приготовлены совместным с бромидом калия и снятыми с подложки наночастицами (в соотношении 1 : 100) прессовании таблеток диаметром 13 mm и толщиной∼ 0.55 mm.…”
Section: методика экспериментаunclassified
“…Такая возможность может быть реализована с использованием плазмы дугового разряда низкого давления [6][7][8][9][10][11]. В этом случае синтез наночастиц в контролируемой среде и их осаждение на порошок сверхпроводящей керамики осуществляется in situ в рамках единого технологического процесса.…”
Section: Introductionunclassified