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Fe/Fe oxide nanocomposite particles with large specific absorption rate for hyperthermia

机译:具有较高比热吸收率的Fe / Fe氧化物纳米复合颗粒

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Using a water-in-oil microemulsion with cetyl trimethyl ammonium bromide as the surfactant, iron was reduced to form a metallic core on which a passivating oxide shell was grown. Transmission electron microscopy, vibrating sample magnetometry, and heating measurements were used to characterize these monodispersed magnetic Fe/Fe_3O_4 composite nanoparticles with respect to the possible application for magnetic hyperthermia treatments of cancer. The aim is to utilize the fact that an iron core (high saturation magnetization) will give a greater heating effect than iron oxide, while the iron oxide coating will allow the nanoparticles to be observed using magnetic resonance imaging so that therapy can be effectively monitored and targeted. The largest specific absorption rate obtained was 345 W/g under an alternating magnetic field of 150 Oe at 250 kHz.
机译:使用以十六烷基三甲基溴化铵为表面活性剂的油包水型微乳液,还原铁以形成金属芯,在该金属芯上生长钝化氧化物壳。相对于在癌症的磁热疗中的可能应用,使用透射电子显微镜,振动样品磁法和加热测量来表征这些单分散的磁性Fe / Fe_3O_4复合纳米颗粒。目的是利用铁芯(高饱和磁化强度)比氧化铁具有更大的加热效果,而氧化铁涂层将允许使用磁共振成像观察纳米颗粒,从而可以有效地监控和治疗。有针对性的。在150 Oe的交变磁场和250 kHz下获得的最大比吸收率为345 W / g。

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