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首页> 外文期刊>Journal of chromatography, B. Analytical technologies in the biomedical and life sciences >Simple approaches to close the open structure of microfluidic chips and connecting them to the macro-world
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Simple approaches to close the open structure of microfluidic chips and connecting them to the macro-world

机译:关闭微流控芯片开放结构并将其连接到宏观世界的简单方法

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摘要

Microchip electrophoresis has a great potential to improve the speed and throughput of chemical and biochemical analyses. Conventional electrophoresis microchip fabrication methods comprise the main steps of channel formation, cover plate binding and access hole construction. While the fabrication of appropriate cover plates and their bonding process are quite essential to the creation of closed microfluidic networks, connection means of microchips to the macro-world is one of the most important parts of microchip fabrication. In this paper the most commonly used approaches are discussed for cover plate connector fabrication in conjunction with high and low temperature glue-less binding processes. The microchannels in the glass substrate were fabricated by sawing and powder blasting under regular laboratory settings, i.e., not necessitating the use of a clean-room environment, making in this way broader availability for electrophoresis microchip technology. (c) 2006 Elsevier B.V. All rights reserved.
机译:微芯片电泳具有巨大的潜力,可以提高化学和生化分析的速度和通量。常规的电泳微芯片制造方法包括通道形成,盖板结合和进入孔构造的主要步骤。虽然适当的盖板的制造及其键合过程对于创建封闭的微流体网络非常重要,但将微芯片连接到宏观世界的方法是微芯片制造中最重要的部分之一。在本文中,讨论了最常用的盖板连接器制造方法以及高温和低温无胶粘合工艺。玻璃基板中的微通道是通过在常规实验室设置下进行锯切和喷砂来制造的,即无需使用洁净室环境,从而使电泳微芯片技术的使用范围更广。 (c)2006 Elsevier B.V.保留所有权利。

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