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首页> 外文期刊>Spectrochimica Acta, Part B. Atomic Spectroscopy >Micro-structured analytical instrumentation for the analysis of liquids
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Micro-structured analytical instrumentation for the analysis of liquids

机译:用于分析液体的微结构分析仪器

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Micro-structured analytical instruments are designed for manipulating and transporting fluids and biological entities. In the near future they will form the key element for so-called micro Total Analysis Systems. Conventionally, these elements are made from glass or silicon by wet-etching. In comparison to these materials, a much wider range of micro-structuring technologies is available for plastic materials. Polymers have the additional advantage of being readily replicable with low-cost methods such as injection molding or hot embossing. Functioning microchips for different purposes were produced this way. An advantage of micro-structured analytical instruments is the handling of ultra-small volumes. In some cases this can result in inappropriate detection limits. Two cocnepts to overcome this problem are demonstrated: an on-column conductivity detector and the coupling of microchips with mass spectrometry. To achieve a higher sample load capacity compared to miniaturized separation devices for capillary electrophoresis, isotachophoresis is applied. Isotachophoresis is used as a separation technique in itself and as a sample pre-concentration technique in combination with capillary electrophoresis.
机译:微结构分析仪器设计用于操纵和运输流体和生物实体。在不久的将来,它们将成为所谓的微量总分析系统的关键要素。通常,这些元件通过湿蚀刻由玻璃或硅制成。与这些材料相比,可用于塑料材料的微结构技术范围更加广泛。聚合物的另一个优势是可以通过低成本方法(例如注塑或热压花)轻松复制。以这种方式生产了用于不同目的的功能性微芯片。微结构分析仪器的优点是可以处理超小体积。在某些情况下,这可能会导致不合适的检测极限。证明了克服这一问题的两个方法:柱上电导检测器和质谱联用微芯片。与毛细管电泳的小型化分离装置相比,为了实现更高的样品负载能力,采用了等速电泳。等速电泳本身就是一种分离技术,并且与毛细管电泳结合起来用作样品预浓缩技术。

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