Atmospheric Pressure Glow-Discharge Plasmas with Gas–Liquid Interface

Atmospheric Pressure Glow-Discharge Plasmas with Gas–Liquid Interface
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DOI:
10.1143/jjap.45.8286
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发表时间:
2006-10
影响因子:
1.5
通讯作者:
K. Baba;T. Okada;T. Kaneko;R. Hatakeyama
K. Baba;T. Okada;T. Kaneko;R. Hatakeyama
中科院分区:
物理与天体物理4区
文献类型:
--
作者:
K. Baba;T. Okada;T. Kaneko;R. Hatakeyama

文献摘要

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使用电容耦合等离子体(CCP)方法产生与液体接触的大气压辉光放电等离子体,通过该方法,在等离子体(气相)和液体石蜡(液相)之间的边界区域,即,气-液界面被认为是重要的。通过选择合适的网状电极和液体石蜡,获得了稳定的大气压液体等离子体。此外,光发射光谱的结果表明,碳物种来自石蜡的等离子体的界面区域。因此,预期该等离子体将促进使用有吸引力的等离子体工艺来产生将各种元素封装在液体中的材料。
An atmospheric pressure glow-discharge plasma in contact with liquid is generated using a capacitively coupled plasma (CCP) method, by which a boundary region between a plasma (gas-phase) and liquid paraffin (liquid-phase), i.e., gas–liquid interface is considered to be important. A stable atmospheric pressure plasma with liquid is achieved by selecting the appropriate mesh electrode and liquid paraffin. In addition, results of optical emission spectroscopy indicate that carbonic species come from paraffin in the interface region of the plasma. This plasma is accordingly expected to promote the use of an attractive plasma process for creating materials encapsulating various elements in liquids.