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Nanoscale thermal phenomena in the vicinity of magnetic nanoparticles in alternating magnetic fields

机译:交变磁场中磁性纳米粒子附近的纳米级热现象

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摘要

Magnetic nanoparticles can be made to dissipate heat to their immediate surroundings in response to an applied alternating magnetic field. This property, combined with the biocompatibility of iron oxide nanoparticles and the ability of magnetic fields to penetrate deep in the body, makes magnetic nanoparticles attractive in a range of biomedical applications where thermal energy is used either directly to achieve a therapeutic effect or indirectly to actuate the release of a therapeutic agent. Although the concept of bulk heating of fluids and tissues using energy dissipated by magnetic nanoparticles has been well accepted and applied for several decades, many new and exciting biomedical applications of magnetic nanoparticles take advantage of heat effects that are confined to the immediate nanoscale vicinity of the nanoparticles. Until recently the existence of these nanoscale thermal phenomena had remained controversial. In this short review we summarize some of the recent developments in this field and emerging applications for nanoscale thermal phenomena in the vicinity of magnetic nanoparticles in alternating magnetic fields.
机译:可以使磁性纳米颗粒响应于所施加的交变磁场而将热量消散到其周围环境。这种特性与氧化铁纳米粒子的生物相容性以及磁场穿透人体深处的能力相结合,使磁性纳米粒子在一系列生物医学应用中具有吸引力,在这些应用中,热能直接用于实现治疗效果或间接用于激活能量治疗剂的释放。尽管使用磁性纳米颗粒消散的能量对液体和组织进行整体加热的概念已被广泛接受并应用了数十年,但磁性纳米颗粒的许多新的激动人心的生物医学应用都利用了热效应,而这种热效应仅限于纳米粒子的直接纳米级附近。纳米粒子。直到最近,这些纳米级热现象的存在仍引起争议。在这篇简短的评论中,我们总结了该领域的一些最新进展以及交变磁场中磁性纳米颗粒附近纳米级热现象的新兴应用。

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