| Literature DB >> 32399307 |
Guochen Qi1, Di Tian1, Guolun Gao1, Guangda Liu1, Chunling Qiu1, Tao Long2.
Abstract
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.Entities:
Year: 2020 PMID: 32399307 PMCID: PMC7204179 DOI: 10.1155/2020/2809485
Source DB: PubMed Journal: J Anal Methods Chem ISSN: 2090-8873 Impact factor: 2.193
Figure 1(a) Simulation structure of the designed EI ionization source. (b) Electron trajectory (blue lines) simulation of the designed EI ionization source. (c) Ion trajectory (blue lines) simulation of the designed EI ionization source. (d) Potential contours (red lines) and ion focus effect (black lines) in the EI ionization source. (e) Ion optic focus effect in the ionization chamber.
Figure 2Diagram of the ion optic focus.
Figure 3Main composition of the designed EI ionization source. 1: ionization chamber; 2: electron collector; 3: horizontal deflection lens; 4: focus lens; 5: perpendicular deflection lens; 6: slit; 7: horizontal deflection lens; 8: perpendicular deflection lens; 9: cathode filament.
Figure 4Photography of the homemade EI ionization source apparatus.
Figure 5Function of electron intensity with the electron energy emitted from the filament.
Figure 6Electron intensity with the various values of the magnetic field from 0 to 900 Gs.
Figure 7Relationship between ion signal intensity and repeller potential: (a) positive ion mode; (b) negative ion mode.