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Role of zinc substitution in magnetic hyperthermia properties of magnetite nanoparticles: interplay between intrinsic properties and dipolar interactions

机译:锌取代在磁铁矿纳米粒子磁体热疗性中的作用:内在特性与偶极相互作用之间的相互作用

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Optimizing the intrinsic properties of magnetic nanoparticles for magnetic hyperthermia is of considerable concern. In addition, the heating efficiency of the nanoparticles can be substantially influenced by dipolar interactions. Since adequate control of the intrinsic properties of magnetic nanoparticles is not straightforward, experimentally studying the complex interplay between these properties and dipolar interactions affecting the specific loss power can be challenging. Substituting zinc in magnetite structure is considered as an elegant approach to tune its properties. Here, we present experimental and numerical simulation results of magnetic hyperthermia studies using a series of zinc-substituted magnetite nanoparticles (Znsubx/subFesub1-x/subFesub2/subOsub4/sub, x?=?0.0, 0.1, 0.2, 0.3 and 0.4). All experiments were conducted in linear regime and the results were inferred based on the numerical simulations conducted in the framework of the linear response theory. The results showed that depending on the nanoparticles intrinsic properties, interparticle interactions can have different effects on the specific loss power. When dipolar interactions were strong enough to affect the heating efficiency, the parameter σ?=?Ksubeff/subV/ksubB/subT (Ksubeff/sub is the effective anisotropy and V the volume of the particles) determined the type of the effect. Finally, the sample x?=?0.1 showed a superior performance with a relatively high intrinsic loss power 5.4 nHmsup2/supkgsup-1/sup.
机译:优化磁体热疗的磁性纳米粒子的内在性质具有相当大的关注。另外,纳米颗粒的加热效率可以基本上受到偶极相互作用的影响。由于对磁性纳米粒子的内在性质的充分控制并不直接,因此实验研究这些性质与影响特定损耗功率的偶极相互作用之间的复杂相互作用可能是具有挑战性的。以磁铁矿结构替代锌被认为是调整其性质的优雅方法。这里,我们使用一系列锌取代磁铁矿纳米粒子(Zn x Fe 1-x Fe 2 O 4 ,x?= 0.0,0.1,0.2,0.3和0.4)。所有实验均以线性制度进行,并基于线性响应理论框架中进行的数值模拟推断出结果。结果表明,根据纳米颗粒的内在性质,颗粒间相互作用对特定损耗功率产生不同的影响。当偶极相互作用足够强以影响加热效率时,参数σΔ=Δk<亚> eff v / k b t(k eff 是颗粒的有效各向异性和v的体积)确定了效果的类型。最后,样品x?= 0.1显示出具有相对高的内在损耗功率5.4 nHM 2 kg -1 的优异性能。

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