2022
DOI: 10.1134/s0031918x22600919
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The Dependence of the Magnetothermal Properties of ZnxMn1 – xFe2O4 Nanoparticles on the Magnetic Field Near Physiological Brezovich Limit

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Cited by 3 publications
(3 citation statements)
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“…In our previous papers (Liu et al, 2022a;Liu et al, 2022b;Liu et al, 2022c), the extensive studies of various factors affecting the SAR value of bare Zn x Mn 1-x Fe 2 O 4 MNPs suspended in deionized water were carried out within the aforementioned optimal magnetic field amplitude and frequency range (H = 50-100 Oe, f = 100-200 kHz). The superquadratic, up to 5th power, dependence on amplitude was observed for medium-sized MNPs (13-17 nm).…”
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confidence: 99%
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“…In our previous papers (Liu et al, 2022a;Liu et al, 2022b;Liu et al, 2022c), the extensive studies of various factors affecting the SAR value of bare Zn x Mn 1-x Fe 2 O 4 MNPs suspended in deionized water were carried out within the aforementioned optimal magnetic field amplitude and frequency range (H = 50-100 Oe, f = 100-200 kHz). The superquadratic, up to 5th power, dependence on amplitude was observed for medium-sized MNPs (13-17 nm).…”
mentioning
confidence: 99%
“…The superquadratic, up to 5th power, dependence on amplitude was observed for medium-sized MNPs (13-17 nm). This unusual property enables one to reduce the operating frequency to values more suitable for clinical application and to reduce the economic cost of the instrument (Liu et al, 2022a;Liu et al, 2022b;Liu et al, 2022c;Liu N. N. et al, 2022). Since the size of MnZn ferrite MNPs obtained by the co-precipitation method depends on Zn content, the optimum Zn concentration corresponding to the maximum SAR value at constant magnetic field amplitude shifts from 25% to 15% while the frequency decreases from 300 kHz to 100 kHz (Liu et al, 2022b).…”
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confidence: 99%
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