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首页> 外文期刊>Nanoscale >Susceptibility losses in heating of magnetic core/shell nanoparticles for hyperthermia: a Monte Carlo study of shape and size effects
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Susceptibility losses in heating of magnetic core/shell nanoparticles for hyperthermia: a Monte Carlo study of shape and size effects

机译:在加热磁磁化率的损失核/壳纳米粒子为高热:蒙特卡洛的形状和大小的影响

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摘要

Optimizing the heating properties of magnetic nanoparticles is of great importance for hyperthermia applications. Recent experimental results show that core/shell nanoparticles could give an increased specific absorption rate (SAR) compared to the magnetic oxide nanoparticles currently used. We have developed a modified phenomenological model based on the linear Neel-Brown relaxation model to calculate the SAR due to susceptibility losses in complex nanoparticles with ferromagnetic (FM) core/ferrimagnetic (FiM) shell morphology. We use the Monte Carlo (MC) simulation technique with the implementation of the Metropolis algorithm to investigate the effect of size and shape on the magnetisation behaviour of complex ferromagnetic/ferrimagnetic nanoparticles covered by a surfactant layer. The findings of our simulations are used as an input in our modified model for the calculation of the SAR. Our calculations show that for all the sizes and shapes the complex FM/FiM nanoparticles give higher SAR values than the pure ferrimagnetic ones due to their higher core saturation magnetisation. For all sizes the nanoparticles with the truncated cuboctahedral shape give the highest SAR values and the cubic ones the lowest ones. The decrease in the surfactant thickness results in an increase of the SAR values. Our results have the same characteristics as the available experimental data from Fe/Fe3O4 nanoparticles, confirming that the complex nanoparticles with core/shell morphology can optimise the heating properties for hyperthermia.
机译:优化磁的加热特性纳米粒子具有十分重要的意义高热的应用程序。结果表明,核/壳纳米粒子给增加特定吸收率(SAR)而磁性氧化物纳米颗粒目前使用的。基于线性现象学模型Neel-Brown弛豫模型来计算特区由于磁化率损失在复杂纳米粒子与铁磁(FM)核心/亚铁磁性(鳍)壳形态。蒙特卡罗(MC)模拟技术大都市的实现算法调查的大小和形状的影响复杂的磁化行为铁磁/亚铁磁性纳米颗粒覆盖由表面活性剂层。在我们修改模拟作为一个输入特区。我们的计算模型计算表明,对于所有的大小和形状复杂的FM /鳍纳米颗粒SAR值高于纯亚铁磁性由于他们的核心饱和度高磁化。截断cuboctahedral形状给最高SAR值和立方的最低的人。结果在SAR值的增加。结果相同的特点从铁/ Fe3O4可用实验数据纳米粒子,确认复杂与核/壳纳米粒子形态优化高热的加热特性。

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