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首页> 外文期刊>Analytical chemistry >Design and Performance of a Universal Sheathless Capillary Electrophoresis to Mass Spectrometry Interface Using a Split-Flow Technique
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Design and Performance of a Universal Sheathless Capillary Electrophoresis to Mass Spectrometry Interface Using a Split-Flow Technique

机译:使用分流技术的通用无鞘毛细管电泳到质谱接口的设计和性能

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A split-flow capillary electrophoresis electrospray ionization mass spectrometry (CE/ESI-MS) interface is introduced, in which the electrical connection to the CE capillary outlet is achieved by diverting part of the CE buffer out of the capillary through an opening near the capillary outlet. The CE buffer exiting the opening contacts a sheath metal tube which acts as the CE outlet/ESI shared electrode. In cases in which the ESI source uses a metal needle, the voltage contact to the CE buffer is achieved by simply inserting the outlet of the CE capillary, which contains an opening, into the existing ESI needle (thereby greatly simplifying the CE to MS interfacing). As a result of the concentration-sensitive nature of ESI, splitting a small percentage of the CE flow has minimal effect on the sensitivity of detection. In addition, because the liquid is flowing through the opening and out of the capillary, there is no dead volume associated with this interface. Moreover, bubble formation due to redox reactions of water at the electrode does not effect CE/ESI-MS performance, because the actual metal/liquid contact occurs outside of the CE capillary. The sensitivity associated with a sheathless CE/MS interface, the ease of fabrication, universality, and lack of any dead volume make this design a superior CE/ESI-MS interface. The performance of this interface is demonstrated by analyses of a peptide standard and a protein digest using a variety of capillary dimensions.
机译:引入了分流毛细管电泳电喷雾电离质谱(CE / ESI-MS)接口,其中通过将CE缓冲液的一部分通过毛细管附近的开口从毛细管中移出,从而实现了与CE毛细管出口的电连接。出口。从开口中流出的CE缓冲液与一根护套金属管接触,该金属管充当CE出口/ ESI共享电极。在ESI源使用金属针的情况下,只需将CE毛细管的包含一个开口的出口插入现有ESI针中即可实现与CE缓冲器的电压接触(从而大大简化了CE到MS的接口) )。由于ESI具有浓度敏感特性,将一小部分CE流量分配给检测灵敏度的影响很小。另外,由于液体流经开口并流出毛细管,因此没有与该界面相关的死体积。而且,由于水在电极上的氧化还原反应而形成的气泡不会影响CE / ESI-MS性能,因为实际的金属/液体接触发生在CE毛细管外部。与无护套CE / MS接口相关的灵敏度,易于制造,通用性和无死体积使该设计成为出色的CE / ESI-MS接口。通过使用各种毛细管尺寸对肽标准品和蛋白质消化物进行分析,可以证明该界面的性能。

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