大气压下的电感耦合等离子体,对微型器件的挑战

H. Porteanu, I. Stefanović, M. Klute, R. Brinkmann, P. Awakowicz, W. Heinrich
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引用次数: 0

摘要

等离子体射流属于远程等离子体。这意味着放电条件和对样品的化学效应可以单独调整,这是与标准低压反应器相比的一大优势。电感耦合带来了等离子体纯净致密的优点。微波激发允许进一步小型化和产生低温等离子体。本论文展示了这种源的研究的艺术状态,展示了他们的工作到大气压力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Inductively Coupled Plasma at Atmospheric Pressure, a Challenge for Miniature Devices
Plasma jets belong to the category remote plasma. This means that the discharge conditions and the chemical effect on samples can be tuned separately, this being a big advantage compared to standard low-pressure reactors. The inductive coupling brings the advantage of a pure and dense plasma. The microwave excitation allows furthermore miniaturization and generation of low temperature plasmas. The present paper shows the state of the art of the research on such sources, demonstrating their work up to atmospheric pressure.
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