Lu Xichi, Yeow John T W, Jiang Gongyu, Xiao Yu, Yao Rujiao, Zhang Qi, Song Jiacheng, Yao Jinyuan
National Key Laboratory of Science and Technology on Micro/Nano Fabrication, Shanghai Jiao Tong University, Shanghai 200240, China.
Department of Micro/Nano Electronics, School of Electronic Information and Electrical Engineering, Shanghai Jiao Tong University, Shanghai 200240, China.
Micromachines (Basel). 2022 Sep 22;13(10):1572. doi: 10.3390/mi13101572.
The miniaturization of ion trap mass analyzers is an important direction in the development of mass spectrometers. In this work, we proposed two models of miniaturized HreLIT with a field radius of about 2 mm based on the existing research on conventional HreLIT and other ion traps, one with ions ejection slits on one pair of electrodes only (2-slit model) and the other with the same slits on all electrodes (4-slit model). The relationship of mass resolution with and the "stretch" distance of electrodes in the ejection direction is investigated by theoretical simulations. Trends of electric fields inside the ion traps were discussed as well. The comparable maximum resolution is observed at = 2/1.4 in both models, but stretching simulations revealed that the peak resolution of the 2-slit model was higher than that of the other model by about 8%. The highest value of 517 was obtained when stretching 1.1 mm. Furthermore, the resolution of ions with / = 119 could exceed 1000 when the scan rate was reduced to 800 Th/s. The mass spectrometry capability of miniature HreLIT has been confirmed theoretically, and it laid the foundation for the subsequent fabrication with MEMS technology.
离子阱质量分析器的小型化是质谱仪发展的一个重要方向。在这项工作中,基于对传统HreLIT和其他离子阱的现有研究,我们提出了两种场半径约为2 mm的小型化HreLIT模型,一种仅在一对电极上设有离子出射狭缝(双狭缝模型),另一种在所有电极上都设有相同的狭缝(四狭缝模型)。通过理论模拟研究了质量分辨率与出射方向上电极“拉伸”距离的关系。还讨论了离子阱内部的电场趋势。在两种模型中,当 = 2/1.4时均观察到了相当的最大分辨率,但拉伸模拟表明,双狭缝模型的峰值分辨率比另一种模型高约8%。拉伸1.1 mm时获得了517的最高值。此外,当扫描速率降低到800 Th/s时, / = 119的离子分辨率可超过1000。微型HreLIT的质谱分析能力已在理论上得到证实,为后续采用微机电系统(MEMS)技术制造奠定了基础。