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首页> 外文期刊>Journal of the American Society for Mass Spectrometry >Axial CID and High Pressure Resonance CID in a Miniature Ion Trap Mass Spectrometer Using a Discontinuous Atmospheric Pressure Interface
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Axial CID and High Pressure Resonance CID in a Miniature Ion Trap Mass Spectrometer Using a Discontinuous Atmospheric Pressure Interface

机译:使用不连续大气压接口的微型离子阱质谱仪中的轴向CID和高压共振CID

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摘要

Axial collision induced dissociation (CID) and high-pressure resonance CID were implemented and compared with normal low-pressure resonance CID in a miniature ion trap mass spectrometer to obtain more complete fragmentation spectra. Axial CID was realized simply by applying a potential to the discontinuous atmospheric pressure interface (DAPI) capillary without performing parent ion isolation before dissociation. High-pressure resonance CID employed a double-introduction pulse scan function, by means of which precursor ions isolated at low-pressure (<10-3 torr) were dissociated at high-pressure (0.1 torr–1 torr) with higher excitation energy, so that tandem MS of isolated precursor ions was achieved and extensive fragmentation was obtained. A simple peptide (Leu-enkephalin) and dye molecule (rhodamine B) ionized by ESI were used to investigate both methods and compare them with normal low-pressure resonance CID.
机译:实施了轴向碰撞诱导解离(CID)和高压共振CID,并在微型离子阱质谱仪中将其与常规低压共振CID进行了比较,以获得更完整的碎片光谱。轴向CID只需通过在不连续的大气压界面(DAPI)毛细管上施加电势即可实现,而无需在解离前进行母离子分离。高压共振CID具有双重引入脉冲扫描功能,借助该功能,在低压(<10-3托)下分离的前体离子在高压(0.1托-1托)下以较高的激发能解离,从而获得了分离的前体离子的串联质谱,并获得了广泛的碎片化效果。用ESI电离的简单肽(Leu-脑啡肽)和染料分子(若丹明B)研究了这两种方法,并将它们与正常的低压共振CID进行了比较。

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