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Organic plasma process for simple and substrate-independent surface modification of polymeric BioMEMS devices

机译:有机等离子体工艺可对聚合物BioMEMS器件进行简单且与基材无关的表面改性

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摘要

A polymeric bio micro electromechanical systems (BioMEMS) device was fabricated using organic plasma polymerization, by which the surface of a polymeric substrate could easily be modified through vapor-phase deposition of organic thin films. This technique, capable of polymeric deposition of any kind of monomer, can serve the purpose of anti-fouling coating, wettability control, or layer-to-layer interface creation, on the surface of any given chemically-inert polymeric substrate without involving cumbersome surface organic reactions. A prototype device was fabricated to have an array of electrochemical glucose biosensors with the three electrode configuration, each of which has a microfluidic channel (500 mum x 800 mum) for capillary-action-driven sample delivery and the concerned enzymatic reaction. Stressing the advantages of the plasma polymerization process using a polymeric substrate together with some additional features accomplished in our device fabrication, new possibilities in the field of polymeric BioMEMS are discussed. (C) 2004 Elsevier B.V. All rights reserved.
机译:使用有机等离子体聚合制造了聚合物生物微机电系统(BioMEMS)装置,通过该装置可以通过气相沉积有机薄膜轻松地修饰聚合物基板的表面。这种技术能够聚合沉积任何种类的单体,可用于在任何给定的化学惰性聚合物基材表面上进行防污涂层,控制润湿性或形成层到层界面的目的,而不会涉及繁琐的表面有机反应。原型设备被制造为具有三个电极配置的电化学葡萄糖生物传感器阵列,每个传感器都有一个微流体通道(500毫米x 800毫米),用于毛细管作用驱动的样品输送和相关的酶促反应。强调了使用聚合物基板进行等离子体聚合过程的优势以及在我们的设备制造中实现的一些其他功能,讨论了聚合物BioMEMS领域的新可能性。 (C)2004 Elsevier B.V.保留所有权利。

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