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    • 7. 发明授权
    • Ion interface device having multiple confinement cells and methods of use thereof
    • 具有多个限制电池的离子界面装置及其使用方法
    • US08629409B2
    • 2014-01-14
    • US13363036
    • 2012-01-31
    • Viatcheslav V. Kovtoun
    • Viatcheslav V. Kovtoun
    • H01J49/26H01J49/40H01J49/06H01J49/00
    • H01J49/063H01J49/0031H01J49/005H01J49/0481H01J49/062
    • A device and associated methods of operations are disclosed for interfacing on ion trap to a mass analyzer, such as a TOF mass analyzer. The device includes a plurality of sequentially arranged confinement cells having fixed locations. A group of ions, e.g., ions within a relatively narrow window of mass-to-charge ratio, is received by the device from the ion trap, undergoes fragmentation, and is transported through the device from a first to final confinement cell by a series of transfers between adjacent cells. The ion group is confined in each cell for a prescribed cooling period. By providing a suitable aggregate ion confinement time and by enabling concurrent transport and cooling of successively ejected ion groups, the ions are cooled sufficiently to enable the acquisition of mass spectra at high resolution, without having to substantially delay the ejection of a subsequent group of ions from the ion trap until cooling of the previous group is completed.
    • 公开了一种用于将离子阱连接到质量分析器(例如TOF质量分析器)上的装置和相关联的操作方法。 该装置包括具有固定位置的多个顺序排列的约束单元。 一组离子,例如在质荷比较窄的窗口内的离子被器件从离子阱接收,经历碎裂,并通过串联从第一至第一限制电池传输通过该装置 的相邻单元之间的传输。 离子组被限制在每个电池中规定的冷却时间。 通过提供合适的聚集体离子限制时间并且通过使连续喷射的离子基团能够同时传输和冷却,离子被充分冷却以使得能够以高分辨率获取质谱,而不必基本上延迟随后的一组离子的喷射 从离子阱直到前一组的冷却完成。
    • 10. 发明申请
    • Mass Spectrometer
    • 质谱仪
    • US20110095180A1
    • 2011-04-28
    • US12999957
    • 2008-06-20
    • Junichi Taniguchi
    • Junichi Taniguchi
    • H01J49/40
    • H01J49/36H01J49/004H01J49/0481H01J49/40H01J49/424H01J49/426H01J49/427
    • In performing an isolation of specific ions or performing a dissociation operation by CID, ions are captured by applying a radio-frequency high voltage to a ring electrode 31 as before. In a cooling operation which is performed immediately before target ions are ejected toward a TOFMS unit 4 with the ions stored in an ion trap 3, a radio-frequency high voltage is not applied to the ring electrode 31 but to end cap electrodes 32 and 34 to capture the ions. In this operation, the frequency thereof is set to be higher than that of the voltage applied to the ring electrode 31 and the amplitude is also increased in order to assure a large pseudopotential and keep the low mass cutoff (LMC). This narrows the spatial distribution of the cooled ions, reducing the variation of the initial positions of the ions at the point in time when they are ejected, which increases the mass resolution. In addition, since an isolation of ions having a large m/z can be performed with a great qz value as is conventionally done, a high mass selectivity can be assured.
    • 在执行特定离子的分离或通过CID进行解离操作时,如前所述通过向环形电极31施加射频高电压来捕获离子。 在将离子存储在离子阱3内的目标离子朝向TOFMS单元4喷射之前执行的冷却操作中,高频高压不施加到环形电极31而是端盖电极32和34 捕获离子。 在这种操作中,其频率被设置为高于施加到环形电极31的电压的频率,并且为了确保大的伪电位并保持低质量截止(LMC),振幅也增加。 这减小了冷却的离子的空间分布,减少了它们在喷射时的时间点上离子的初始位置的变化,这增加了质量分辨率。 此外,由于如以往那样以大的qz值进行具有大m / z的离子的分离,因此可以确保高的质量选择性。