首页> 外文期刊>Chemphyschem: A European journal of chemical physics and physical chemistry >Selection of a Single Isotope of Multiply Charged Xenon (Xe-A(z+), A=128-136, z=1-6) by Using a Bradbury-Nielsen Ion Gate
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Selection of a Single Isotope of Multiply Charged Xenon (Xe-A(z+), A=128-136, z=1-6) by Using a Bradbury-Nielsen Ion Gate

机译:通过使用Bradbury-Nielsen离子栅极选择多电荷的氙(XE-A(Z +),A = 128-136,Z = 1-6)的单个同位素

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摘要

The inclusion of an ion gate in a tandem mass spectrometer allows a specific precursor ion to be selected, and the fragment ions are then used for structure analysis and to investigate chemical reactions. However, the performance of an ion gate has been judged simply by whether or not the target ion was selected. In this study, we designed, manufactured, constructed, and characterized a Bradbury-Nielsen ion gate (BNG). The actual ion selection ability, i.e. the gate function, of the BNG was measured for isotopes of Xez+ (z = 1-6). The gate function of the BNG was 36.5 +/- 0.5 ns in width and 3-13 ns in rise and fall times. The BNG provides a simple way to select multiply charged molecular cations of small organic molecules as well as large molecules such as proteins and peptides.
机译:在串联质谱仪中包含离子栅极允许选择特定的前体离子,然后将片段离子用于结构分析并研究化学反应。 然而,仅通过选择目标离子来判断离子门的性能。 在这项研究中,我们设计了制造,制造,构造和以Bradbury-Nielsen Ion门(BNG)设计。 测量XEZ +(Z = 1-6)的同位素的实际离子选择能力,即BNG的栅极功能。 BNG的栅极功能为36.5 +/- 0.5ns,宽度和3-13 ns在上升和下降时间。 BNG提供了一种简单的方法来选择小型有机分子的乘以带电分子阳离子以及蛋白质和肽如蛋白质和肽的大分子。

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