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MAGNETICALLY CONTROLLED VALVE FOR FLOW MANIPULATION IN POLYMER MICROFLUIDIC DEVICES

机译:磁控制阀,用于聚合物微流控设备中的流量控制

摘要

A simple, external in-line valve for use in microfluidic devices constructed of elastomer such as polydimethylsiloxane (PDMS) is described. The actuation of the valve is based on the principle that flexible polymer walls of a liquid channel can be pressed together by the aid of a permanent magnet and a small metal bar. In the presence of a small NdFeB magnet lying below the channel of interest, the metal bar is pulled downward simultaneously pushing the thin layer of PDMS down thereby closing the channel stopping any flow of fluid. The operation of the valve is dependent on the thickness of the PDMS layer, the height of the channel, the gap between the chip and the magnet and the strength of the magnet. The microfluidic channels are completely closed to fluid flows commonly used in microfluidic applications. The valve allows for fabrication of a “thin chip” that allows for detection of chromophoric species within the microchannel via an external fiber optics detection system. C18-Modified reverse phase silica particles are packed into the microchannel using a temporary taper created by the magnetic valve and separations using both pressure and electrochromatographic driven methods is detailed.
机译:描述了一种用于由弹性体例如聚二甲基硅氧烷(PDMS)构成的微流体装置中的简单的外部管线阀。阀门的操纵基于以下原理:液体通道的柔性聚合物壁可以借助永磁体和小金属条压在一起。在位于目标通道下方的小NdFeB磁体存在的情况下,将金属棒向下拉,同时向下推PDMS薄层,从而关闭通道,以阻止任何流体流动。阀的操作取决于PDMS层的厚度,通道的高度,芯片和磁体之间的间隙以及磁体的强度。微流体通道完全封闭微流体应用中通常使用的流体流。该阀允许制造“薄芯片”,该芯片允许通过外部光纤检测系统检测微通道内的发色物质。使用由电磁阀产生的临时锥度,将C18改性的反相二氧化硅颗粒填充到微通道中,并详细介绍了使用压力和电色谱驱动方法进行的分离。

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