首页> 外文期刊>Journal of the American Society for Mass Spectrometry >Proof of Concept Coded Aperture Miniature Mass Spectrometer Using a Cycloidal Sector Mass Analyzer, a Carbon Nanotube (CNT) Field Emission Electron Ionization Source, and an Array Detector
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Proof of Concept Coded Aperture Miniature Mass Spectrometer Using a Cycloidal Sector Mass Analyzer, a Carbon Nanotube (CNT) Field Emission Electron Ionization Source, and an Array Detector

机译:概念编码孔径微型质谱仪的证明使用摆线扇形质量分析仪,碳纳米管(CNT)场发射电子电离源和阵列检测器

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摘要

Despite many potential applications, miniature mass spectrometers have had limited adoption in the field due to the tradeoff between throughput and resolution that limits their performance relative to laboratory instruments. Recently, a solution to this tradeoff has been demonstrated by using spatially coded apertures in magnetic sector mass spectrometers, enabling throughput and signal-to-background improvements of greater than an order of magnitude with no loss of resolution. This paper describes a proof of concept demonstration of a cycloidal coded aperture miniature mass spectrometer (C-CAMMS) demonstrating use of spatially coded apertures in a cycloidal sector mass analyzer for the first time. C-CAMMS also incorporates a miniature carbon nanotube (CNT) field emission electron ionization source and a capacitive transimpedance amplifier (CTIA) ion array detector. Results confirm the cycloidal mass analyzer's compatibility with aperture coding. A 10x increase in throughput was achieved without loss of resolution compared with a single slit instrument. Several areas where additional improvement can be realized are identified.
机译:尽管有许多潜在的应用,但由于吞吐量和分辨率之间的权衡限制了它们相对于实验室仪器的性能之间的权衡,微型质谱仪已经有限。最近,通过在磁扇区质量光谱仪中使用空间编码的孔来证明对该权衡的解决方案,从而实现吞吐量和信号 - 背景改进大于幅度的数量级,没有损失分辨率。本文介绍了摆线编码孔径微型质谱仪(C-CAMMS)的概念演示证明,首次示出了在摆线扇区质量分析仪中使用空间上编码的孔。 C-CAMM还包括微型碳纳米管(CNT)场发射电子电离源和电容式跨阻率(CTIA)离子阵列检测器。结果证实了摆线质量分析仪与孔径编码的兼容性。 A&与单个狭缝仪器相比,在不损失的情况下实现了10倍的吞吐量。确定可以实现额外改进的几个区域。

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