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Self-enhanced plasma discharge effect in the deposition of diamond-like carbon films on the inner surface of slender tube

机译:在细长管内表面沉积类金刚石碳膜时的自增强等离子体放电效应

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摘要

Enhanced glow discharge plasma immersion ion implantation and deposition (EGD-PIII&D) have been proved to be highly effective for depositing diamond-like carbon (DLC) films on the inner surface of the slender quartz tube with a deposition rate of 1.3 mu m/min. Such a high-efficiency DLC films deposition was explained previously as the short electrons mean free path to cause large collision frequency between electrons and neutral particles. However, in this paper, we found that the inner surface material of the tube itself play a vital role on the films deposition. To disclose the mechanism of this phenomenon, the effect of different inner surface materials on plasma discharge was experimentally and theoretically investigated. Then a self-enhancing plasma discharge is discovered. It is found that secondary electrons emitted from the inner surface material, whatever it is the tube inner surface or deposited DLC films, can dramatically enhance the plasma discharge to improve the DLC films deposition rate. (C) 2016 Elsevier B.V. All rights reserved.
机译:事实证明,增强型辉光放电等离子体浸没离子注入和沉积(EGD-PIII&D)能以1.3μm/ min的沉积速率在细长石英管的内表面上沉积类金刚石碳(DLC)膜非常有效。 。如此高效率的DLC膜沉积先前已被解释为短的电子意味着自由路径,从而导致电子与中性粒子之间发生大的碰撞频率。但是,在本文中,我们发现管子本身的内表面材料在薄膜沉积中起着至关重要的作用。为了揭示这种现象的机理,通过实验和理论研究了不同内表面材料对等离子体放电的影响。然后发现自增强等离子体放电。发现从内表面材料发射的二次电子,无论是管内表面还是沉积的DLC膜,都可以显着增强等离子体放电,从而提高DLC膜的沉积速率。 (C)2016 Elsevier B.V.保留所有权利。

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