Department of Electrical and Computer Engineering, Duke University, Durham, North Carolina 27708, United States.
Broadway Analytical, LLC, Monmouth, Illinois 61462, United States.
J Am Soc Mass Spectrom. 2021 Feb 3;32(2):509-518. doi: 10.1021/jasms.0c00378. Epub 2020 Dec 31.
Cycloidal sector mass analyzers have, in principle, perfect focusing due to perpendicularly oriented uniform electric and magnetic fields, making them ideal candidates for incorporation of spatially coded apertures. We have previously demonstrated a proof-of-concept cycloidal-coded aperture miniature mass spectrometer (C-CAMMS) instrument and achieved a greater than 10-fold increase in throughput without sacrificing resolution, compared with a single slit instrument. However, artifacts were observed in the reconstructed mass spectrum due to nonuniformity in the electric field and misalignment of the detector and the ion source with the mass analyzer focal plane. In this work, we modified the mass analyzer design of the previous C-CAMMS instrument to improve electric field uniformity, improve the alignment of the ion source and the mass analyzer with the detector, and increase the depth-of-focus to further facilitate alignment. A comparison of reconstructed spectra of a mixture of dry air and toluene at different electric fields was performed using the improved C-CAMMS prototype. A reduction in reconstruction artifacts compared to our proof-of-concept C-CAMMS instrument highlights the improved performance enabled by the design changes.
回旋扇形质量分析器由于具有垂直方向的均匀电场和磁场,原则上具有完美的聚焦性能,因此非常适合集成空间编码孔径。我们之前已经展示了一个回旋编码孔径微型质谱仪 (C-CAMMS) 的概念验证仪器,并与单狭缝仪器相比,实现了超过 10 倍的吞吐量增加,而分辨率不受影响。然而,由于电场不均匀和探测器与离子源与质量分析器焦平面未对准,在重建的质谱中观察到了伪影。在这项工作中,我们修改了之前 C-CAMMS 仪器的质量分析器设计,以提高电场均匀性,改善离子源和质量分析器与探测器的对准,并增加焦深,以进一步便于对准。使用改进的 C-CAMMS 原型对不同电场下的干燥空气和甲苯混合物的重建光谱进行了比较。与我们的概念验证 C-CAMMS 仪器相比,重建伪影的减少突出了设计更改带来的改进性能。