等离子印刷:在大气压下进行图案表面功能化和涂层。

C Penache, C Gessner, T Betker, V Bartels, A Hollaender, C-P Klages
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引用次数: 28

摘要

一种新的基于等离子体的微图案技术,这里被称为等离子体印刷,结合了众所周知的介电阻挡放电(DBD)的非平衡特性及其在尺寸在几十到几百微米之间的小气体体积内工作的优点。排放在常压下运行,可以很容易地实现与生物技术和微技术应用的图案表面处理。在这项工作中,介质衬底的局部改性,例如聚合物薄膜,涉及涂层和化学功能化,生物分子的固定化和区域选择性化学镀。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Plasma printing: patterned surface functionalisation and coating at atmospheric pressure.

A new plasma-based micropatterning technique, here referred to as plasma printing, combines the well known advantages given by the nonequilibrium character of a dielectric barrier discharge (DBD) and its operation inside small gas volumes with dimension between tens and hundreds of micrometres. The discharge is run at atmospheric pressure and can be easily implemented for patterned surface treatment with applications in biotechnology and microtechnology. In this work the local modification of dielectric substrates, e.g. polymeric films, is addressed with respect to coating and chemical functionalisation, immobilisation of biomolecules and area-selective electroless plating.

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