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The influence of colloidal parameters on the specific power absorption of PAA-coated magnetite nanoparticles

机译:胶体参数对PAA包覆磁铁矿纳米粒子比吸收功率的影响

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摘要

The suitability of magnetic nanoparticles (MNPs) to act as heat nano-sources by application of an alternating magnetic field has recently been studied due to their promising applications in biomedicine. The understanding of the magnetic relaxation mechanism in biocompatible nanoparticle systems is crucial in order to optimize the magnetic properties and maximize the specific absorption rate (SAR). With this aim, the SAR of magnetic dispersions containing superparamagnetic magnetite nanoparticles bio-coated with polyacrylic acid of an average particle size of ≈10 nm has been evaluated separately by changing colloidal parameters such as the MNP concentration and the viscosity of the solvent. A remarkable decrease of the SAR values with increasing particle concentration and solvent viscosity was found. These behaviours have been discussed on the basis of the magnetic relaxation mechanisms involved.PACS: 80; 87; 87.85jf
机译:由于它们在生物医学中的应用前景广阔,最近研究了磁性纳米颗粒(MNP)通过施加交变磁场作为热纳米源的适用性。为了优化磁性能和最大化比吸收率(SAR),对生物相容性纳米粒子系统中的磁弛豫机理的理解至关重要。为此,已通过改变胶体参数(如MNP浓度和溶剂粘度)分别评估了含有平均粒径约为10 nm的聚丙烯酸生物包覆的超顺磁性磁铁矿纳米颗粒的磁性分散体的SAR。随着颗粒浓度和溶剂粘度的增加,SAR值显着下降。这些行为已在所涉及的磁弛豫机理的基础上进行了讨论。PACS:80; P。 87; 87.85jf

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