Comparison of AC plasma jets between dielectric barrier discharge and surface barrier discharge

Q1 Medicine Clinical Plasma Medicine Pub Date : 2018-02-01 DOI:10.1016/j.cpme.2017.12.010
Insun Park , Sang-You Kim , Inje Kang , Min-keun Bae , Yoonje Lee , Yeongtak Song , Tae Ho Lim , Kyu-Sun Chung *
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引用次数: 1

Abstract

For plasma to be applied to practical medical tools, the length of plasma column and plasma density should be well controlled in non-thermal atmospheric pressure plasma jets, although active radicals are the real ones to react with the human surfaces. AC plasma jets from two different discharge modes (dielectric barrier discharge and surface barrier discharge) have been compared in terms of plasma and neural parameters. With different AC frequency and different gas composition (He, Ar, He/O2, or Ar/O2) of the source, the characteristics of plasmas and neutrals of two different jets are comparatively investigated by taking discharge images and emission spectra in terms of the length of plasma column, plasma density, and electron temperature, and rotational temperatures. Electrostatic method has also been introduced, although atmospheric plasma tends to generate arc or short-circuit with electric probe tip, in order to deduce the spatially averaged plasma or floating potentials of two jets by a capacitive couple method with condition of collisional sheath according to various discharge conditions[1].

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介质阻挡放电与表面阻挡放电的交流等离子体射流比较
为了使等离子体应用于实际的医疗工具,在非热大气压等离子体射流中,等离子体柱的长度和等离子体密度应该得到很好的控制,尽管活性自由基是与人体表面发生反应的真正自由基。比较了两种放电模式(介质阻挡放电和表面阻挡放电)下的交流等离子体射流的等离子体参数和神经参数。在不同交流频率和不同气体组成(He、Ar、He/O2或Ar/O2)的情况下,通过拍摄等离子体柱长度、等离子体密度、电子温度和旋转温度等放电图像和发射光谱,比较研究了两种不同射流的等离子体和中性物特性。本文还介绍了静电法,虽然大气等离子体容易产生电弧或电探针尖短路,但根据不同的放电条件[1],采用碰撞护套条件下的电容偶法推导出两个射流的空间平均等离子体或浮动电位。
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Clinical Plasma Medicine
Clinical Plasma Medicine MEDICINE, RESEARCH & EXPERIMENTAL-
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