纳米颗粒
材料科学
放松(心理学)
集聚经济
磁滞
化学物理
凝聚态物理
磁性纳米粒子
布朗运动
悬挂(拓扑)
磁热疗
各向异性
磁场
混乱
热的
纳米技术
核磁共振
热力学
化学工程
化学
光学
物理
医学
工程类
内科学
同伦
纯数学
量子力学
数学
心理学
精神分析
作者
Alison Deatsch,Emily E. Evans
标识
DOI:10.1016/j.jmmm.2013.11.006
摘要
Magnetic nanoparticles for hyperthermic treatment of cancers have gained significant attention in recent years. In magnetic hyperthermia, three independent mechanisms result in thermal energy upon stimulation: Néel relaxation, Brownian relaxation, and hysteresis loss. The relative contribution of each is strongly dependent on size, shape, crystalline anisotropy, and degree of aggregation or agglomeration of the nanoparticles. We review the effects of each of these physical mechanisms in light of recent experimental studies and suggest routes for progress in the field. Particular attention is given to the influence of the collective behaviors of nanoparticles in suspension. A number of recent studies have probed the effect of nanoparticle concentration on heating efficiency and have reported superficially contradictory results. We contextualize these studies and show that they consistently indicate a decrease in magnetic relaxation time with increasing nanoparticle concentration, in both Brownian- and Néel-dominated regimes. This leads to a predictable effect on heating efficiency and alleviates a significant source of confusion within the field.
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