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Reactive amine surfaces for biosensor applications, prepared by plasma-enhanced chemical vapour modification of polyolefin materials

机译:用于生物传感器的反应性胺表面,通过等离子体增强聚烯烃材料的化学气相改性制备

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摘要

Here we have demonstrated a solventless plasma-based process that integrates low-cost, high throughput, high reproducibility and ecofriendly process for the functionalization of the next-generation point-of-care device platforms. Amine functionalities were deposited by plasma-enhanced chemical vapour deposition (PECVD) using a new precursor. The influence of the plasma RF power and the deposition time on surfacial properties, as well as their effect on the reactivity and content of amino groups was investigated. The key process determinants were to have a sufficient power in the plasma to activate and partially fragment the monomer but not too much as to lose the reactive amine functionality, and sufficient deposition time to develop a reactive layer but not to consume or erode the amine reactivity. An immunoassay performed using human immunoglobulin (IgG) as a model analyte showed an improvement of the detection limit by two orders of magnitude beyond that obtained using devices activated by liquid-phase reaction. (c) 2010 Elsevier B.V. All rights reserved.
机译:在这里,我们展示了一种无溶剂的基于等离子体的工艺,该工艺集成了低成本,高通量,高重现性和环保工艺,可用于下一代即时医疗设备平台的功能化。使用新的前驱体通过等离子体增强化学气相沉积(PECVD)沉积胺功能。研究了等离子体射频功率和沉积时间对表面性质的影响,以及它们对氨基的反应性和含量的影响。关键的过程决定因素是在血浆中具有足够的能量来活化和部分裂解单体,但又不至于失去太多的活性胺官能度,以及足够的沉积时间来形成活性层而又不消耗或侵蚀胺反应性。使用人免疫球蛋白(IgG)作为模型分析物进行的免疫测定显示,检测限比使用液相反应激活的装置获得的检测限提高了两个数量级。 (c)2010 Elsevier B.V.保留所有权利。

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