生物医学用球磨氧化铁纳米颗粒的磁化及比吸收率研究

Philip Burnham, N. Dollahon, Calvin H. Li, A. J. Viescas, G. Papaefthymiou
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引用次数: 22

摘要

在油酸的存在下,用己烷球磨法制备了平均直径为7 ~ 15 nm的氧化铁纳米颗粒。透射电镜发现,随着磨矿时间和表面活性剂浓度的增加,球形颗粒的尺寸逐渐减小。在室温下,通过穆斯堡尔谱法进行微磁表征,获得了更宽的磁谱特征,而在7-8 nm直径的颗粒上,通过振动样品磁强计进行宏磁表征,在室温下显示出很大的超顺磁行为,在2 K时显示出滞后性。零场和场冷磁化曲线在~215 K处表现出宽的最大值,表明存在强的粒子间磁相互作用。测量了基于这些纳米颗粒制剂的铁磁流体的特定吸收率,以测试它们作为热疗剂的功效。
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Magnetization and Specific Absorption Rate Studies of Ball-Milled Iron Oxide Nanoparticles for Biomedicine
Comparative studies are presented of iron oxide nanoparticles in the 7–15 nm average diameter range ball milled in hexane in the presence of oleic acid. Transmission electron microscopy identified spherical particles of decreasing size as milling time and/or surfactant concentration increased. Micromagnetic characterization via Mossbauer spectroscopy at room temperature yielded broadened magnetic spectroscopic signatures, while macromagnetic characterization via vibrating sample magnetometry of 7-8 nm diameter particles showed largely superparamagnetic behavior at room temperature and hysteretic at 2 K. Zero-field and field-cooled magnetization curves exhibited a broad maximum at ~215 K indicating the presence of strong interparticle magnetic interactions. The specific absorption rates of ferrofluids based on these nanoparticle preparations were measured in order to test their efficacies as hyperthermia agents.
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