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A Novel Plasma Technique for Surface Treatment: The Plasma Expander

机译:一种用于表面处理的新型等离子技术:等离子扩展器

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摘要

This paper describes a new plasma treatment method: the plasma expander. In this approach, expanding shock waves are generated in a vacuum chamber by pulsed plasmas. Collisions of fast species in the waves modify the properties of solid surfaces exposed to the plasma. The degree of such modification is governed by the energy delivered by the plasma exposure. To confirm the efficacy of this approach, modifications induced in the properties of thin polymer films produced by plasma-enhanced chemical vapor deposition by exposure to nitrogen plasma shock waves were investigated. The films were prepared from benzene radio frequency plasmas and subsequently exposed to different quantities of nitrogen shock waves $N_{w}$. The effects of $N_{w}$ on the wettability, molecular structure, and mechanical properties of the films were studied. Fourier transform infrared spectroscopy revealed that greater $N_{w}$ resulted in the loss of C–H groups and the rupture of benzene aromatic rings observed in the structure of the as-deposited films. Furthermore, the contact angle strongly increased and the hardness, evaluated by nanoindentation, increased up to fourfold with the increase in the intensity of the treatment.
机译:本文介绍了一种新的等离子体处理方法:等离子体扩展器。在这种方法中,通过脉冲等离子体在真空室中产生扩大的冲击波。波浪中快速物质的碰撞会改变暴露于等离子体的固体表面的特性。这种修饰的程度取决于等离子体暴露所传递的能量。为了证实该方法的有效性,研究了通过暴露于氮气等离子体冲击波而通过等离子体增强的化学气相沉积产生的聚合物薄膜特性中引起的改性。该膜由苯射频等离子体制备,随后暴露于不同数量的氮气冲击波N_ {w} $。研究了$ N_ {w} $对薄膜的润湿性,分子结构和机械性能的影响。傅立叶变换红外光谱表明,$ N_ {w} $越大,CH原子团的损失和沉积膜结构中苯芳环的断裂就越明显。此外,接触角大大增加,并且通过纳米压痕评估的硬度随着处理强度的增加而增加至四倍。

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