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Size-dependent magnetic and inductive heating properties of Fe3O4 nanoparticles: scaling laws across the superparamagnetic size

机译:Fe3O4纳米粒子的尺寸依赖性磁性和电感性加热性能:超顺磁尺寸的缩放法律

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摘要

An efficient heat activating mediator with an enhanced specific absorption rate (SAR) value is attained via control of the iron oxide (Fe3O4) nanoparticle size from 3 to 32 nm. Monodispersed Fe3O4 nanoparticles are synthesized via a seed-less thermolysis technique using oleylamine and oleic acid as the multifunctionalizing agents (surfactant, solvent and reducing agent). The inductive heating properties as a function of particle size reveal a strong increase in the SAR values with increasing particle size up to 28 nm. In particular, the SAR values of ferromagnetic nanoparticles (16 nm) are strongly enhanced with the increase of ac magnetic field amplitude than that for the superparamagnetic (3-16 nm) nanoparticles. The enhanced SAR values in the ferromagnetic regime are attributed to the synergistic contribution from the hysteresis and susceptibility loss. Specifically, the 28 nm Fe3O4 nanoparticles exhibit an enhanced SAR value of 801 W g(-1) which is nearly an order higher than that of the commercially available nanoparticles.
机译:通过控制氧化铁(Fe3O4)纳米粒径范围为3至32nm,获得具有增强的特异性吸收率(SAR)值的有效热激活介体。通过使用甲胺和油酸作为多官能化剂(表面活性剂,溶剂和还原剂),通过种子的热解技术合成单分散的Fe3O4纳米颗粒。作为粒度的函数的感应加热特性显示出SAR值的强烈增加,粒度增加至28nm。特别地,随着AC磁场幅度的增加而大于超顺磁性(3-16nm)纳米颗粒的基础,强大地增强了铁磁性纳米颗粒(& 16nm)的SAR值。铁磁制度中增强的SAR值归因于滞后和易感性损失的协同贡献。具体地,28nm Fe 3 O 4纳米颗粒表现出增强的SAR值为801Wg(-1),其几乎比市售纳米颗粒高的命令。

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