椭圆型纳米金粒子的电泳吸收-参数研究

IF 3.2 Q2 ENGINEERING, ELECTRICAL & ELECTRONIC
Brage Bøe Svendsen;Mariana Dalarsson
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引用次数: 0

摘要

本文研究了椭球状金纳米颗粒(AuNPs)的射频电泳响应。由于现有的工作一般考虑球形AuNPs的电泳加热,这项工作为理解椭球状AuNPs的行为提供了重要的一步。我们首先开发了一个分析框架来模拟椭球状AuNPs的电泳响应。此后,由于缺乏对AuNPs非球形电泳射频加热的实验研究,我们以球形AuNPs为特例,通过与已有实验结果的对比来验证我们的理论,并估计了一些之前没有考虑到的额外参数。然后,对表面电荷、摩擦常数、频率和离子背景进行了参数研究,并与AuNP的尺寸和形状有关。最后,我们提出了椭球状AuNPs在人体组织中的电磁吸收和热率的新结果。我们的组织测试结果表明,由于宿主介质粘度的主要差异,水介质和真实人体组织之间存在很大差异。我们证明了电泳对宿主介质粘度的强烈依赖性,其中我们注意到癌组织的粘度比水的粘度高一千多倍。因此,我们确认了RF AuNP加热的阴性结果,这是我们自己之前的研究和其他两个先前的研究表明的。我们的研究结果为射频AuNP加热在医学领域的可行性提供了重要的见解
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Electrophoretic Absorption of Ellipsoidal Gold Nanoparticles—A Parameter Study
This paper investigates the RF electrophoretic response of ellipsoidal gold nanoparticles (AuNPs). Since the existing works generally consider the electrophoretic heating of spherical AuNPs, this work provides an important step towards understanding the behavior of ellipsoidal AuNPs. We first develop an analytical framework for modeling of electrophoretic response of ellipsoidal AuNPs. Thereafter, due to the lack of experimental studies of non-spherical electrophoretic RF heating of AuNPs, we validate our theory by comparison to the existing experimental results of spherical AuNPs as a special case, and estimate a few additional parameters not considered before. Then, parameter studies are performed on surface charge, friction constant, frequency, and ionic background, with respect to AuNP size and shape. Finally, we present new results for the electromagnetic absorption and heat rates of ellipsoidal AuNPs in human tissue. Our results from the tissue testing indicate a strong difference between aqueous media and realistic human tissues due to the major difference in the host medium viscosity. We demonstrate the electrophoresis' strong dependency on the host medium's viscosity, where we note that cancer tissue viscosity is more than a thousand times higher than that of water. We thereby confirm negative results for RF AuNP heating, indicated by our own previous study and two other previous studies. Our results provide important insights into the feasibility of RF AuNP heating in a medical context
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来源期刊
CiteScore
5.80
自引率
9.40%
发文量
58
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