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平面电极线性离子阱质谱仪的小型化

Miniaturization of a planar-electrode linear ion trap mass spectrometer.

作者信息

Li Ailin, Hansen Brett J, Powell Andrew T, Hawkins Aaron R, Austin Daniel E

机构信息

Department of Chemistry and Biochemistry, Brigham Young University, Provo, UT, 84602, USA.

出版信息

Rapid Commun Mass Spectrom. 2014 Jun 30;28(12):1338-44. doi: 10.1002/rcm.6906.

Abstract

RATIONALE

We describe the miniaturization of a linear-type ion trap mass spectrometer for possible applications in portable chemical analysis. This work demonstrates the potential and the advantages of using lithographically patterned electrode plates in realizing an ion trap with dimension y0 less than 1 mm. The focus of this work was to demonstrate the viability and flexibility of the patterned electrode approach to trap miniaturization, and also to discover potential obstacles to its use.

METHODS

Planar, low-capacitance ceramic substrates were patterned with metal electrodes using photolithography. Plates that were originally used in a linear trap with a half-spacing (y0 ) of 2.19 mm were positioned much closer together such that y0 = 0.95 mm. A capacitive voltage divider provided different radiofrequency (RF) amplitudes to each of 10 electrode elements (5 on each side of the ejection slit), and the capacitor values were adjusted to provide the correct electric field at this closer spacing. The length of the trapping region, 45 mm, is unchanged from the previous device.

RESULTS

Electron ionization mass spectra of toluene and dichloromethane demonstrate instrument performance, with better than unit mass resolution for the molecular ion and fragment ion peaks of toluene. Compared with the larger plate spacing, the signal is reduced, corresponding to the reduced trapping capacity of the smaller device. However, the mass resolution of the larger device is retained.

CONCLUSIONS

Lithographically patterned substrates are a viable pathway to fabricating highly miniaturized ion traps for mass spectrometry. These results also demonstrate the possibility of significant reduction of the ion trap volume without physical modification of the electrodes. These experiments show promise for further miniaturization using assemblies of patterned ceramic plates. Copyright © 2014 John Wiley & Sons, Ltd.

摘要

原理

我们描述了一种线性离子阱质谱仪的小型化,其可用于便携式化学分析。这项工作展示了使用光刻图案化电极板实现尺寸y0小于1毫米的离子阱的潜力和优势。这项工作的重点是证明图案化电极方法在离子阱小型化方面的可行性和灵活性,并发现其使用中的潜在障碍。

方法

使用光刻技术在平面低电容陶瓷基板上制作金属电极图案。原本用于半间距(y0)为2.19毫米的线性阱中的极板被放置得更近,使得y0 = 0.95毫米。电容分压器为10个电极元件(喷射狭缝两侧各5个)中的每一个提供不同的射频(RF)幅度,并调整电容值以在更近的间距下提供正确的电场。捕获区域的长度为45毫米,与之前的设备保持不变。

结果

甲苯和二氯甲烷的电子电离质谱表明了仪器性能,甲苯的分子离子峰和碎片离子峰的质量分辨率优于单位质量分辨率。与较大的极板间距相比,信号降低,这与较小设备的捕获能力降低相对应。然而,较大设备的质量分辨率得以保留。

结论

光刻图案化基板是制造用于质谱分析的高度小型化离子阱的可行途径。这些结果还表明,在不物理修改电极的情况下,显著减小离子阱体积是可能的。这些实验为使用图案化陶瓷板组件进一步小型化带来了希望。版权所有© 2014约翰威立父子有限公司。

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