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Selective Extraction of a Monoisotopic Ion While Keeping the Other Ions in Flight on a Multi-Turn Time-of-Flight Mass Spectrometer

机译:在多转型飞行中断飞行中保持其他离子的同时选择性提取单同位素离子

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Using a multi-turn time-of-flight (TOF) mass spectrometer, we have extracted a single xenon isotope ion, ~(129)Xe~(+), from its orbit at given a lap number without disturbing the rest of isotopes. After detecting the ~(129)Xe~(+) at 20 laps, the rest of the xenon isotope spectrum was obtained at 30 laps, which generated a TOF spectrum where the TOF difference between ~(129)Xe~(+) and ~(130)Xe~(+) was 87.4?μs while ~(130)Xe~(+) and ~(131)Xe~(+) were 1.03?μs. The time distance between ~(129)Xe~(+) and other isotopes can be set by any lap difference that is a factor of 8.7?μs, which depends on the acceleration voltage and the mass of the ion. Method accuracy was verified by comparing the isotopic abundance ratio of the xenon sample after withdrawing one of the ions from the isotope cluster to the abundance ratio obtained from the conventional method. The TOF stability was also evaluated at various lap numbers between 10 to 230.
机译:使用多转的飞行时间(TOF)质谱仪,我们提取了单个氙同位素离子,〜(129)Xe〜(+),从其轨道上给出了一个膝盖数,而不会扰乱其余的同位素。在20圈检测〜(129)xe〜(+)后,在30圈获得其余的氙同位素谱,产生TOF光谱,其中TOF差异在〜(129)xe〜(+)之间的TOF差异。 (130)Xe〜(+)为87.4ΩΩμs而〜(130)xe〜(+)和〜(131)xe〜(+)为1.03ΩΩ·μs。 〜(129)Xe〜(+)和其他同位素之间的时间距离可以通过任何leap差异设定,这是一个值为8.7ΩΩμs的,这取决于加速电压和离子的质量。通过将氙样品的同位素丰度比与从同位素簇中的一个离子抽出至从常规方法获得的丰度比较,通过比较氙样品的同位素丰度比进行验证方法精度。还在10至230之间的各种圈数评估TOF稳定性。

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