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Limitation of Time-of-Flight Resolution in the Ultra High Mass Range

机译:飞行时间分辨率在超高质量范围内的限制

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In this work, we have examined the reason for the deterioration of resolution and mass accuracy of time-of-flight mass analyzers with increasing mass after the expansion-induced kinetic energy has been eliminated by collisional cooling in an ion guide. Theoretically, removing the expansion-induced kinetic energy by collisional cooling permits the ions to travel along the ion guide axes without significant deviation so that they can be injected into the analyzer in a well-collimated ion beam with well-defined kinetic energy. If the ions can be injected into an orthogonal acceleration time-of-flight mass analyzer (oa-TOF) in this manner, high-resolution mass analysis can be obtained regardless of mass or m/z. Unfortunately, high resolution did not result. It is our contention that the effusive expansion out of the first ion guide yields dispersive axial ejection that reduces TOF resolving power with increasing mass not m/z.
机译:在这项工作中,我们研究了在通过离子导向器中的碰撞冷却消除了膨胀引起的动能后,飞行时间质量分析器的分辨率和质量准确性随质量增加而降低的原因。从理论上讲,通过碰撞冷却消除膨胀引起的动能,可使离子沿着离子导向轴移动而不会产生明显的偏差,因此可以将离子以良好定义的动能注入到准直的离子束中。如果可以通过这种方式将离子注入正交加速飞行时间质量分析器(oa-TOF),则无论质量还是m / z,都可以获得高分辨率的质量分析。不幸的是,没有得到高分辨率。我们的争辩是,从第一离子导向器中喷出的膨胀会产生分散的轴向喷射,从而随着质量(而非m / z)的增加而降低TOF分辨能力。

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