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Extension of the focusable mass range in distance-of-flight mass spectrometry with multiple detectors

机译:具有多个检测器的飞行距离质谱仪中可聚焦质量范围的扩展

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RATIONALE Distance-of-flight mass spectrometry(DOFMS) is a velocity-based mass separation technique in which ions are spread across a spatially selective detector according to m/z. In this work, we investigate the practical mass range available for DOFMS with a finite-length detector. METHODS A glow-discharge DOFMS instrument has been constructed for the analysis of atomic ions. This instrument was modified to accommodate two spatially selective ion detectors, arranged co-linearly, along the mass-separation axis of the analyzer. With this geometry, each detector covers a different portion of the distance-of-flight spectrum and ions are detected simultaneously at the two detectors. The total flight distance covered by the two detectors is 106 mm and simulates DOF detection across a broad mass range. RESULTS DOFMS theory predicts that ions of all m/z values are focused at a single flight time, but at m/z-dependent flight distances. Therefore, ions that are detected across a wide portion of the DOF axis should all yield the same peak widths. With a focal-plane camera detector and a micro-channel plate/phosphor-screen detection assembly, we found simultaneous, uniform focus of ~(40)Ar _2 ~+ and of ~(65)Cu ~+ and ~(63)Cu ~+ with the ions spread 82 mm across the DOF axis. This detection length, combined with the current instrument geometry, allows for a simultaneously detectable m/z value of 4:3(high mass-to-low mass). CONCLUSIONS These results are the first experimental verification that constant-momentum acceleration(CMA)-DOFMS provides energy focus across an extended detection length. Evidence presented demonstrates that DOFMS is amenable to detection with(at least) a 100-mm detector surface. These results indicate that DOFMS is well suited for detection of broader mass ranges.
机译:理性飞行距离质谱仪(DOFMS)是一种基于速度的质量分离技术,其中离子根据m / z分布在空间选择性检测器上。在这项工作中,我们研究了使用有限长度检测器可用于DOFMS的实际质量范围。方法构造了一种辉光放电DOFMS仪器,用于分析原子离子。对该仪器进行了修改,以适应沿分析仪的质量分离轴共线排列的两个空间选择性离子检测器。通过这种几何形状,每个检测器覆盖飞行距离光谱的不同部分,并且在两个检测器上同时检测离子。两个探测器覆盖的总飞行距离为106毫米,可在较宽的质量范围内模拟自由度探测。结果DOFMS理论预测,所有m / z值的离子都聚焦在单个飞行时间上,但聚焦在m / z依赖的飞行距离上。因此,在自由度轴的宽范围内检测到的离子都应产生相同的峰宽。使用焦平面相机检测器和微通道板/磷光屏检测组件,我们发现〜(40)Ar _2〜+和〜(65)Cu〜+和〜(63)Cu同时均匀聚焦〜+,且离子在DOF轴上散布82毫米。该检测长度与当前仪器的几何形状相结合,可以同时检测4:3的m / z值(从高质量到低质量)。结论这些结果是第一个实验验证,即恒定动量加速度(CMA)-DOFMS在扩展的检测长度范围内提供了能量聚焦。提出的证据表明,DOFMS适用于(至少)100 mm检测器表面的检测。这些结果表明,DOFMS非常适合于检测更宽的质量范围。

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