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首页> 外文期刊>Surface & Coatings Technology >Chemical reactivity of plasma polymerized allylamine (PPAA) thin films on Au and Si: Study of the thickness influence and aging of the films
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Chemical reactivity of plasma polymerized allylamine (PPAA) thin films on Au and Si: Study of the thickness influence and aging of the films

机译:等离子体聚合的烯丙胺(PPAA)薄膜在Au和Si上的化学反应性:薄膜厚度和时效的研究

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In this work, we investigate the surface reactivity of substrates coated with thin layers (estimated thickness ≤30nm) of plasma polymerized allylamine films (PPAA), an amine-functionalized polymer deposited by plasma-enhanced chemical vapor deposition (PECVD) with radiofrequency (RF) discharges. Our results show that very thin layers, or islands, can retain on their surface molecules that are able to react through their NH_2 functions. We have tested and assessed by X-Ray Electron Spectroscopy (XPS) and Quartz Crystal Microbalance (QCM) the surface density of chemical functions vs. layer thicknesses by using chemical derivatization with two types of agents: imine formation by a reaction of primary amine from the coating with aldehyde (Pentafluorobenzaldehyde, PFBA) and amide-bond formation by reaction with an activated carboxylic group (Succinimidyl Succinate Terminated Polyethylene glycol, EGSS). Results show that the PPAA coatings-even for very thin layers of a few nanometers-promote the chemisorption of the tagging molecules. The aging under air and evolution of reactive amine surface concentration with time under air are also presented.
机译:在这项工作中,我们研究了等离子体聚合的烯丙胺薄膜(PPAA)(通过等离子体增强化学气相沉积(PECVD)和射频(RF)沉积的胺官能化聚合物)的薄层(估计厚度≤30nm)涂覆的基材的表面反应性。 )放电。我们的结果表明,非常薄的层或岛可以保留在分子表面,这些分子能够通过其NH_2功能进行反应。我们已经通过X射线电子能谱(XPS)和石英晶体微天平(QCM)测试和评估了化学功能的表面密度与层厚度的关系,方法是使用两种类型的试剂进行化学衍生化:通过与用醛(五氟苯甲醛,PFBA)和通过与活化的羧基(琥珀酸琥珀酰亚胺基末端的聚乙二醇,EGSS)反应形成酰胺键形成涂层。结果表明,即使是几纳米的非常薄的层,PPAA涂层也能促进标记分子的化学吸附。还介绍了空气中的老化以及空气中反应性胺表面浓度随时间的变化。

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