Waters Corporation, MS Technologies Centre, Wythenshawe, Manchester, United Kingdom.
J Am Soc Mass Spectrom. 2010 Jun;21(6):1061-9. doi: 10.1016/j.jasms.2010.02.017. Epub 2010 Feb 16.
A new type of mass analyzer is described, which allows low-resolution axial ion ejection to be obtained from a traveling wave based, stacked ring collision cell. Linking this ejection temporally with the scanning of the second quadrupole of a tandem quadrupole mass spectrometer provides an improvement in sampling duty cycle, which results in significant signal intensity improvements for scanning acquisitions such as product ion spectra. A near 100% storage efficiency is enabled by a split cell design, which allows ion fragmentation and accumulation to be performed in one section of the collision cell whilst previously accumulated ions are simultaneously ejected from the rear of the cell. These characteristics combine to give an m/z-dependent signal gain of 7-20x over a conventional scanning quadrupole for a 1000 Th scan. The ability to swap very rapidly from a non-enhanced mode of operation to an enhanced mode whilst retaining the existing sensitivity, speed, and functionality of a conventional tandem quadrupole mass spectrometer is also described.
描述了一种新型的质量分析仪,它允许从基于行波的堆叠环碰撞池获得低分辨率的轴向离子引出。将这种引出与串联四极杆质谱仪的第二个四极杆的扫描在时间上进行关联,为扫描采集(如产物离子谱)提供了采样占空比的改进,从而显著提高了信号强度。通过分裂池设计可以实现接近 100%的存储效率,这允许在碰撞池的一个部分中进行离子碎裂和积累,同时从池的后部同时引出先前积累的离子。这些特性结合起来,使在 1000 Th 扫描时,与传统的扫描四极杆相比,m/z 相关的信号增益为 7-20 倍。还描述了一种能够在保持传统串联四极杆质谱仪的现有灵敏度、速度和功能的同时,从非增强模式快速切换到增强模式的能力。