Division of Pharmaceutical Chemistry, Faculty of Pharmacy, P.O. Box 56, FI-00014 University of Helsinki, Finland.
Rapid Commun Mass Spectrom. 2010 Sep 15;24(17):2584-90. doi: 10.1002/rcm.4678.
An ionspray microchip is introduced. The chip is based on the earlier presented nebulizer microchip that consists of glass and silicon plates bonded together. A liquid inlet channel, nebulizer gas inlet, and nozzle are etched on the silicon plate and a platinum heater is integrated on the glass plate. The nebulizer microchip has been previously used in atmospheric pressure chemical ionization, atmospheric pressure photoionization, sonic spray ionization, and thermospray ionization modes. In this work we show that the microchip can be operated also in ionspray mode by introducing high voltage to the silicon plate of the microchip. The effects of operation parameters (voltage, nebulizer gas pressure, sample solution flow rate, solvent composition, and analyte concentration) on the performance of the ion spray microchip were studied. Under optimized conditions the microchip provides efficient ionization of small and large compounds and good quantitative performance. The feasibility of the ion spray microchip in liquid chromatography/mass spectrometry (LC/MS) was demonstrated by the analysis of tryptic peptides of bovine serum albumin.
介绍了一种离子喷雾微芯片。该芯片基于早期提出的雾化器微芯片,由键合在一起的玻璃和硅片组成。在硅片上刻蚀了液体入口通道、雾化器气体入口和喷嘴,并且在玻璃片上集成了铂加热器。雾化器微芯片已在大气压化学电离、大气压光电离、超声喷雾电离和热喷雾电离模式中得到应用。在这项工作中,我们通过向微芯片的硅片施加高压,表明该微芯片也可以在离子喷雾模式下工作。研究了操作参数(电压、雾化器气体压力、样品溶液流速、溶剂组成和分析物浓度)对离子喷雾微芯片性能的影响。在优化条件下,该微芯片能够有效地对小分子和大分子化合物进行离子化,并具有良好的定量性能。通过分析牛血清白蛋白的胰蛋白酶肽,证明了离子喷雾微芯片在液相色谱/质谱(LC/MS)中的可行性。