Department of Chemistry and Applied Biosciences, ETH Zurich, Zurich, Switzerland.
Electrophoresis. 2010 Oct;31(21):3597-605. doi: 10.1002/elps.201000350.
Here, we present a miniaturized version of the flowing atmospheric-pressure afterglow (miniFAPA) ion source and use it for sheathless coupling of CE with MS. The simple design of the CE-miniFAPA-MS interface makes it easy to separate the electric potentials used for CE and for ionization. A pneumatically assisted nebulization of the CE effluent transfers the analytes from the liquid phase into the gas phase before they are ionized by interacting with reactive species produced by the FAPA. An important advantage of this interface is its high stability during operation: optimization of five different parameters indicated that the interface is not sensitive to minor deviations from the optimum values. Other advantages include ease of construction and maintenance, as well as relatively low cost. Samples with complex matrices, such as yeast extract, soil extract and urine, spiked with the test compounds, were successfully analyzed using the CE-miniFAPA-MS setup.
在这里,我们展示了一种小型化的流动大气压后辉光(miniFAPA)离子源,并将其用于 CE 与 MS 的无鞘耦合。CE-miniFAPA-MS 接口的简单设计使得 CE 和电离过程中使用的电势很容易分离。CE 流出物的气动辅助雾化将分析物从液相转移到气相中,然后与 FAPA 产生的反应性物质相互作用将其离子化。该接口的一个重要优点是在操作过程中具有很高的稳定性:对五个不同参数的优化表明,该接口对偏离最佳值的微小偏差不敏感。其他优点包括易于构建和维护,以及相对较低的成本。使用该 CE-miniFAPA-MS 装置成功分析了添加了测试化合物的复杂基质样品,如酵母提取物、土壤提取物和尿液。