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Influence of dielectric coatings on pin-to-rod nanosecond-pulsed discharges in phosphate-buffered saline.介电涂层对磷酸盐缓冲盐水中针-棒纳秒脉冲放电的影响。
IEEE Trans Radiat Plasma Med Sci. 2020 Sep;4(5):655-662. doi: 10.1109/trpms.2020.2969897. Epub 2020 Jan 28.
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本文引用的文献

1
Application of pulsed spark discharge for calcium carbonate precipitation in hard water.脉冲火花放电在硬水中碳酸钙沉淀中的应用。
Water Res. 2010 Jun;44(12):3659-68. doi: 10.1016/j.watres.2010.04.024. Epub 2010 Apr 29.
2
Organic contaminants removal by the technique of pulsed high-voltage discharge in water.脉冲高压放电技术在水中去除有机污染物。
J Hazard Mater. 2009 Nov 15;171(1-3):924-31. doi: 10.1016/j.jhazmat.2009.06.134. Epub 2009 Jul 2.
3
A method of water-bloom prevention using underwater pulsed streamer discharge.一种利用水下脉冲流光放电的水华防治方法。
J Environ Sci Health A Tox Hazard Subst Environ Eng. 2008 Aug;43(10):1209-14. doi: 10.1080/10934520802171782.

介电涂层对磷酸盐缓冲盐水中针-棒纳秒脉冲放电的影响。

Influence of dielectric coatings on pin-to-rod nanosecond-pulsed discharges in phosphate-buffered saline.

作者信息

Brubaker Timothy R, Nicol McKayla J, Kirimanjeswara Girish, Siedlecki Christopher A, Kazemi Ali, Snyder Philip C, Bilén Sven G, Knecht Sean D

机构信息

The Pennsylvania State University.

Penn State College of Medicine, Hershey PA.

出版信息

IEEE Trans Radiat Plasma Med Sci. 2020 Sep;4(5):655-662. doi: 10.1109/trpms.2020.2969897. Epub 2020 Jan 28.

DOI:10.1109/trpms.2020.2969897
PMID:36091604
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC9455827/
Abstract

Plasma medicine is a rapidly expanding field that utilizes non-equilibrium plasma discharges at atmospheric conditions or in liquids for clinical applications. There is significant interest in the production of plasma in the liquid phase for wastewater treatment, agricultural applications, and medical purposes. However, little investigation has been done about the effects of dielectric coatings on submerged electrodes, which is of significant interest to limit electrical current flow in the liquid. This work investigates the effect of different dielectric coatings including aluminum oxide, parylene C, and bi-layer combinations, on plasma discharge characteristics in phosphate-buffered saline (σ = 18 mS/cm) from nanosecond high-voltage pulses. Observed results for aluminum oxide are consistent with past works, including micron-sized clusters of holes generated in the layer due to dielectric breakdown. A bi-layer combination of parylene C on top of aluminum oxide resulted in longer lifetime for electrodes, possibly due to the melting/solidification behavior of the polymer, which may have a "healing" effect. The use of a thick parylene C layer resulted in a different, "creeping", discharge regime, which is hypothesized to be similar to triple-gap discharge observed in space plasma physics and high-voltage insulators, in which the electric field is enhanced at the boundary of a conductor, dielectric, and a vacuum/fluid, resulting in discharge at this junction point. Temporally-resolved and high-spatial-resolution imaging are required for verification.

摘要

等离子体医学是一个迅速发展的领域,它利用大气条件下或液体中的非平衡等离子体放电进行临床应用。人们对液相中等离子体的产生在废水处理、农业应用和医学目的方面有着浓厚的兴趣。然而,关于介电涂层对浸没电极的影响的研究很少,而这对于限制液体中的电流流动具有重要意义。这项工作研究了包括氧化铝、聚对二甲苯C和双层组合在内的不同介电涂层对纳秒高压脉冲在磷酸盐缓冲盐水(σ = 18 mS/cm)中产生等离子体放电特性的影响。观察到的氧化铝的结果与过去的研究一致,包括由于介电击穿在该层中产生的微米级孔洞簇。在氧化铝之上的聚对二甲苯C双层组合使电极寿命更长,这可能是由于聚合物的熔化/凝固行为,可能具有“修复”作用。使用厚的聚对二甲苯C层导致了一种不同的“爬行”放电模式,据推测这类似于在空间等离子体物理学和高压绝缘体中观察到的三间隙放电,即在导体、电介质和真空/流体的边界处电场增强,从而在该连接点产生放电。需要进行时间分辨和高空间分辨率成像来进行验证。