不同驱动场波形下相互作用纳米粒子的磁加热

IF 3.5 2区 物理与天体物理 Q2 PHYSICS, APPLIED
J. Ortega-Julia, D. Ortega, J. Leliaert
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引用次数: 0

摘要

本研究探讨了不同磁场驱动波形对磁热效应中纳米粒子加热的影响。我们的研究将通常的重点从单个纳米粒子的特性转移到相互作用的粒子群上,证明方波比正弦波能诱导更均匀、更大的加热。在正弦波中观察到的顺序切换还在很大程度上取决于粒子群相对于电场方向的排列,这导致不同粒子群内部和粒子群之间的加热不够均匀。与此相反,方波会导致粒子同时切换,从而使热量均匀,并有可能减少危险的热点。这些发现再次证实了使用非谐波场波形进行磁热疗的潜在优势,即加热更均匀,并有可能减少应用场的暴露。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Magnetic heating of interacting nanoparticles under different driving field waveforms
This study explores the impact of different magnetic driving field waveforms on nanoparticle heating in magnetic hyperthermia. Our research, which shifts the usual focus from individual nanoparticle properties to interacting particle clusters, evidences that square waves induce more uniform and greater heating than sinusoidal waves. The sequential switching observed with sinusoidal waves, which additionally strongly depends on the alignment of the particle cluster with respect to the direction of the field, leads to less uniform heating within and among different clusters. In contrast, a square waveform leads to simultaneous particle switching, thereby homogenizing the heat and potentially mitigating hazardous hot spots. These findings reaffirm the potential advantages for magnetic hyperthermia treatments using non-harmonic field waveforms, offering more uniform heating and the possibility of reducing the applied field exposure.
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来源期刊
Applied Physics Letters
Applied Physics Letters 物理-物理:应用
CiteScore
6.40
自引率
10.00%
发文量
1821
审稿时长
1.6 months
期刊介绍: Applied Physics Letters (APL) features concise, up-to-date reports on significant new findings in applied physics. Emphasizing rapid dissemination of key data and new physical insights, APL offers prompt publication of new experimental and theoretical papers reporting applications of physics phenomena to all branches of science, engineering, and modern technology. In addition to regular articles, the journal also publishes invited Fast Track, Perspectives, and in-depth Editorials which report on cutting-edge areas in applied physics. APL Perspectives are forward-looking invited letters which highlight recent developments or discoveries. Emphasis is placed on very recent developments, potentially disruptive technologies, open questions and possible solutions. They also include a mini-roadmap detailing where the community should direct efforts in order for the phenomena to be viable for application and the challenges associated with meeting that performance threshold. Perspectives are characterized by personal viewpoints and opinions of recognized experts in the field. Fast Track articles are invited original research articles that report results that are particularly novel and important or provide a significant advancement in an emerging field. Because of the urgency and scientific importance of the work, the peer review process is accelerated. If, during the review process, it becomes apparent that the paper does not meet the Fast Track criterion, it is returned to a normal track.
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