Charge-Dependent Metastable Dissociations of Multiply Charged Decafluorobiphenyl Formed by Femtosecond Laser Pulses.

Q3 Physics and Astronomy
Mass spectrometry Pub Date : 2023-01-01 Epub Date: 2023-10-03 DOI:10.5702/massspectrometry.A0130
Kosei Kitagawa, Akimasa Fujihara, Tomoyuki Yatsuhashi
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引用次数: 0

Abstract

Femtosecond laser ionization is a unique means to produce multiply charged organic molecules in the gas phase. The charge-dependent chemical reactions of such electron-deficient molecules are interesting from both fundamental and applied scientific perspectives. We have reported the production of quadruply charged perfluoroaromatics; however, they were so stable that we cannot obtain information about their chemical reactions. In general, it might be difficult to realize the conflicting objectives of observing multiply charged molecular ion themselves and their metastable dissociations. In this study, we report the first example showing metastable dissociations of several charge states within the measurable time range of a time-of-flight mass spectrometer. Metastable dissociations were analyzed by selecting a precursor ion with a Bradbury-Nielsen ion gate followed by time-of-flight analysis using a reflectron. We obtained qualitative information that triply and quadruply charged decafluorobiphenyl survived at least in the acceleration region but completely decomposed before entering a reflectron. In contrast, three dissociation channels for singly and one for doubly charged molecular ions were discriminated by a reflectron and determined with the help of ion trajectory simulations.

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飞秒激光脉冲形成的多重带电十氟联苯的电荷依赖亚稳离解。
飞秒激光电离是在气相中产生多重带电有机分子的独特手段。从基础科学和应用科学的角度来看,这种缺电子分子的电荷依赖性化学反应都很有趣。我们已经报道了四重电荷全氟芳烃的生产;然而,它们是如此稳定,以至于我们无法获得关于它们化学反应的信息。一般来说,可能很难实现观察多重带电分子离子本身及其亚稳离解的相互冲突的目标。在这项研究中,我们报道了第一个例子,显示了在飞行时间质谱仪的可测量时间范围内几种电荷态的亚稳离解。通过使用Bradbury-Nielsen离子门选择前体离子,然后使用反射镜进行飞行时间分析,来分析亚稳态解离。我们获得了定性信息,即三重和四重带电的十氟联苯至少在加速区存活,但在进入反射镜之前完全分解。相反,单电荷分子离子和双电荷分子离子的三个离解通道由反射镜区分,并在离子轨迹模拟的帮助下确定。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Mass spectrometry
Mass spectrometry Physics and Astronomy-Instrumentation
CiteScore
1.90
自引率
0.00%
发文量
3
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