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The influence of collective behavior on the magnetic and heating properties of iron oxide nanoparticles

机译:集体行为对氧化铁纳米粒子磁性加热性能的影响

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Magnetic nanoparticles with a high specific absorption rate (SAR) have been developed and used in mouse models of cancer. The magnetic nanoparticles are comprised of predominantly iron oxide magnetic cores surrounded by a dextran layer for colloidal stability. The average diameter of a single particle (core plus dextran) is 92 +- 14 nm as measured by photon correlation spectroscopy. Small angle neutron scattering measurements under several H_2O/D_2O contrast conditions and at varying nanoparticle concentrations have revealed three length scales: >10 mu m, several hundred nanometers, and tens of nanometers. The latter corresponds to the particle diameter; the several hundred nanometers corresponds to a hard sphere interaction radius of the core/shell nanoparticles; >10 mu m corresponds to the formation of long-range, many-particle structures held together by magnetic interactions and dextran. The long-range collective magnetic behavior appears to play a major role in enhancing the SAR. For samples having nominally equal concentrations and similar saturation magnetizations, the measured SAR is 1075 W/(g of Fe) for tightly associated nanoparticles and 150 W/(g of Fe) for very loosely associated nanoparticles at an applied field of 86 kA/m (1080 Oe) and 150 kHz.
机译:具有高比吸收率(SAR)磁性纳米颗粒已经被开发并在小鼠癌症模型中使用。磁性纳米粒子包括通过用于胶体稳定性葡聚糖层包围主要氧化铁磁芯。单个粒子(芯加上葡聚糖)的平均直径为92 + - 14纳米,通过光子相关光谱法测定。几个H_2O / D_2O对比度的条件下和在不同的纳米颗粒的浓度小角中子散射测量已经揭示了3个长度尺度:> 10微米,几百纳米,和几十纳米。后者对应于粒径;在几百纳米对应于所述核/壳纳米粒子的硬球相互作用半径; > 10微米对应于由磁相互作用和葡聚糖保持在一起远距离,多粒子结构的形成。远距离集体磁行为出现在增强特区发挥了重要作用。对于具有名义上相等的浓度和类似饱和磁化强度的样品,测得的SAR是1075 W /(克Fe),用于非常松散相关的纳米颗粒紧密结合的纳米颗粒和150 W /(克Fe)在86千安/米施加场(1080奥斯特)和150千赫。

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