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Citrate-capped gold nanoparticle electrophoretic heat production in response to a time-varying radiofrequency electric-field

机译:柠檬酸盖金纳米颗粒电泳热量响应于时变射频电场

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摘要

The evaluation of heat production from gold nanoparticles (AuNPs) irradiated with radiofrequency (RF) energy has been problematic due to Joule heating of their background ionic buffer suspensions. Insights into the physical heating mechanism of nanomaterials under RF excitations must be obtained if they are to have applications in fields such as nanoparticle-targeted hyperthermia for cancer therapy. By developing a purification protocol which allows for highly-stable and concentrated solutions of citrate-capped AuNPs to be suspended in high-resistivity water, we show herein, for the first time, that heat production is only evident for AuNPs of diameters ≤ 10 nm, indicating a unique size-dependent heating behavior not previously observed. Heat production has also shown to be linearly dependent on both AuNP concentration and total surface area, and severely attenuated upon AuNP aggregation. These relationships have been further validated using permittivity analysis across a frequency range of 10 MHz to 3 GHz, as well as static conductivity measurements. Theoretical evaluations suggest that the heating mechanism can be modeled by the electrophoretic oscillation of charged AuNPs across finite length scales in response to a time-varying electric field. It is anticipated these results will assist future development of nanoparticle-assisted heat production by RF fields for applications such as targeted cancer hyperthermia.
机译:由于用射频(RF)能量辐照的金纳米颗粒(AuNPs)的背景离子缓冲液悬浮液进行焦耳加热,因此对热量产生的评估存在问题。如果要将纳米材料应用于癌症治疗等针对纳米粒子的热疗领域,则必须获得对纳米材料在射频激发下的物理加热机理的见解。通过开发一种纯化方案,该方案允许将柠檬酸盐封端的AuNPs的高度稳定和浓缩溶液悬浮在高电阻率水中,我们在此首次证明,只有直径小于或等于10 nm的AuNPs才会产生明显的热量,表示以前未观察到的独特的尺寸依赖性加热行为。热量的产生还显示出与AuNP浓度和总表面积呈线性关系,并且在AuNP聚集后严重减弱。这些关系已使用10 MHz至3 GHz频率范围内的介电常数分析以及静态电导率测量得到了进一步验证。理论评估表明,可以通过响应于随时间变化的电场在有限的长度范围内对带电的AuNP进行电泳振荡来模拟加热机理。预计这些结果将有助于RF领域在诸如靶向癌症热疗等应用中进一步发展纳米粒子辅助的热量产生。

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