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Development of a quadrupole ion trap / time-of-flight mass spectrometer for mass resolution and ion photophysics.

机译:开发用于质量分辨率和离子光物理的四极离子阱/飞行时间质谱仪。

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摘要

Development of a tandem mass spectrometer, consisting of a quadrupole ion trap (QIT) and a time-of-flight, is described for ion mass resolution and photophysics. Ions are generated externally by electrospray ionization and trapped in the quadrupole ion trap before extraction to the time-of-flight section for mass analysis. The non-parallel fields in the hyperbolic ion trap, which serves as the first acceleration region in the time-of-flight mass spectrometer, are shown to degrade spatial focusing and mass resolution. A novel short-pulse ion extraction method is shown to be useful in diagnosis of the trapped ion cloud size, energy and dispersal time. New ion trap geometries are evaluated theoretically for improvement in mass resolution as well as ion photophysics with similar ion trapping behavior compared with the existing hyperbolic ion trap. Parameters affecting mass resolutions in linear and reflectron time-of-flight modes are identified and possible improvements are discussed. An ion trap consisting of two endcaps and two ring flat electrodes is proposed and constructed on this basis. The newly optimized design is shown to yield the mass resolution of several thousand even at room temperature with moderate extraction field. Significant improvements in ion-laser interaction and photon collection are shown in the optimized design compared to the existing hyperbolic QIT. A molecular beam source is designed, fabricated and characterized for the application in ion-molecule collision experiments. Ionization methods, from solution to gas-phase, of small polycyclic aromatic hydrocarbons are developed and compared. A photo ionization source was designed and constructed to interface in the current mass spectrometer with fast switching capability with the current electrospray source.
机译:描述了一种由四极离子阱(QIT)和飞行时间组成的串联质谱仪的开发,用于离子质量解析和光物理。离子是通过电喷雾电离在外部产生的,并被捕获在四极离子阱中,然后再提取到飞行时间部分进行质量分析。双曲线离子阱中的非平行场(在飞行时间质谱仪中用作第一加速区域)显示降低了空间聚焦和质量分辨率。一种新颖的短脉冲离子提取方法被证明可用于捕获离子云的尺寸,能量和扩散时间的诊断。从理论上评估了新的离子阱几何形状,以改善质量分辨率以及与现有双曲线离子阱相比具有类似离子阱行为的离子光物理。确定了在线性和反射式飞行时间模式下影响质量分辨率的参数,并讨论了可能的改进。在此基础上提出并构造了由两个端盖和两个环形扁平电极组成的离子阱。新优化的设计显示即使在室温和中等萃取场下也能产生数千的质量分辨率。与现有的双曲线QIT相比,优化设计显示了离子激光相互作用和光子收集方面的显着改进。设计,制造和表征了一种分子束源,用于离子分子碰撞实验。开发并比较了从溶液到气相的小多环芳烃的电离方法。设计并构造了一种光电离源,以在电流质谱仪中与当前电喷雾源进行快速切换。

著录项

  • 作者

    Dangi, Beni B.;

  • 作者单位

    University of Nevada, Reno.;

  • 授予单位 University of Nevada, Reno.;
  • 学科 Chemistry General.;Chemistry Physical.;Chemistry Analytical.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 170 p.
  • 总页数 170
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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