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首页> 外文期刊>Journal of Analytical Methods in Chemistry >Numerical Simulations and the Design of Magnetic Field-Enhanced Electron Impact Ion Source with Hollow Cylinder Structure
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Numerical Simulations and the Design of Magnetic Field-Enhanced Electron Impact Ion Source with Hollow Cylinder Structure

机译:空心圆柱结构的数值模拟与磁场增强电子碰撞离子源的设计

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An electron impact ion source-adopted magnetic field-enhanced technology has been designed for enhancing the electron intensity and the ionization efficiency. Based on the ion optic focus mechanism, an electron impact ionization source was designed, and the electron entrance into the ionization chamber was designed with a hollow cylinder structure to improve the ion extraction efficiency. Numerical simulation and optimal geometry were optimized by SIMION 8.0 to provide higher electron intensity and ion transmission efficiency. To improve the electron intensity, the influence of the filament potential and magnetic intensity was investigated, and the values of 70?eV and 150?Gs were chosen in our apparatus. Based on the optimal parameters, the air in the lab and oxygen gas was detected by the homemade apparatus, and the ion intensity was detected in the positive and negative ion modes, respectively. The homemade electron impact ion source apparatus has the potential to enhance ionization efficiency applied in the mass spectrometer ionization source.
机译:设计了一种电子冲击离子源采用的磁场增强技术,用于增强电子强度和电离效率。基于离子光学聚焦机构,设计了电子碰撞电离源,并设计了具有中空圆柱结构的电离室中的电子入口,以提高离子提取效率。 MIDION 8.0优化了数值模拟和最优几何体,提供更高的电子强度和离子传输效率。为了提高电子强度,研究了灯丝电位和磁性强度的影响,在我们的装置中选择了70°的值和150?Gs。基于最佳参数,通过自制装置检测实验室和氧气中的空气,分别在正极和负离子模式中检测离子强度。自制电子碰撞离子源装置具有增强施加在质谱仪电离源中的电离效率的可能性。

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