Du Shiyu, Jia Heyuan, Xu Wei, Zhai Yanbing
School of Life Science, Beijing Institute of Technology, Beijing 100081, China.
Institute of Engineering Medicine, Beijing Institute of Technology, Beijing 100081, China.
Anal Chem. 2023 Jan 11. doi: 10.1021/acs.analchem.2c05014.
Efficient transmission of low-mass ions in a rough vacuum pressure region has always been a challenging issue in mass spectrometry (MS). In this study, a novel ion guide, namely, field-gradient-focusing ion guide (FGF-IG), was proposed to improve the transfer efficiency of ions, especially low-mass ions in a rough vacuum region. The FGF-IG has 12 electrodes whose surfaces gradually narrowed and tilted inward, and its electric field gradually varies from dodecapole (or multipole) to quadrupole along the ion transfer route. The field radius was gradually decreased from 6 to 2 mm in the multipole region (65 mm in length) and finally remained unchanged as 2 mm in the quadrupole region (20 mm in length). By integrating into a miniature mass spectrometer (mini-MS) with a continuous atmospheric pressure interface, this ion guide was optimized in terms of inlet capillary position, radio frequency amplitude, and direct current voltage applied on it. Results showed that a reduced low-mass discrimination effect and improved efficiency of simultaneously transferring mid and low / ions were achieved for FGF-IG compared with a conventional ion funnel. Under optimized conditions, a limit of detection of 1 ng/mL was obtained for both reserpine (/ 609) and arginine (/ 175) ions by integrating FGF-IG into the mini-MS. The sensitivity of smaller arginine ions using FGF-IG was enhanced by ∼10 times than that obtained using the conventional ion funnel (10 ng/mL) in comparative experiments. The idea of smooth transfer from dodecapole to quadrupole fields could be extended to other multipole fields, as well as in lab-scale MS instruments.
在粗真空压力区域中低质量离子的高效传输一直是质谱分析(MS)中的一个具有挑战性的问题。在本研究中,提出了一种新型离子导向器,即场梯度聚焦离子导向器(FGF-IG),以提高离子的传输效率,特别是在粗真空区域中的低质量离子。FGF-IG有12个电极,其表面逐渐变窄并向内倾斜,并且其电场沿离子传输路径从十二极(或多极)逐渐变化为四极。在多极区域(长度为65毫米)中场半径从6毫米逐渐减小到2毫米,最终在四极区域(长度为20毫米)中保持2毫米不变。通过集成到具有连续大气压接口的微型质谱仪(mini-MS)中,对该离子导向器在入口毛细管位置、射频幅度以及施加在其上的直流电压方面进行了优化。结果表明,与传统离子漏斗相比,FGF-IG实现了降低的低质量歧视效应以及提高的中低质量离子同时传输效率。在优化条件下,通过将FGF-IG集成到mini-MS中,利血平(/ 609)和精氨酸(/ 175)离子的检测限均达到1 ng/mL。在对比实验中,使用FGF-IG时较小的精氨酸离子的灵敏度比使用传统离子漏斗(10 ng/mL)提高了约10倍。从十二极场到四极场的平滑转换的想法可以扩展到其他多极场,以及实验室规模的MS仪器中