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纳 tips 环境离子化质谱法。

Nanotip Ambient Ionization Mass Spectrometry.

机构信息

Department of Chemistry, Stanford University , Stanford, California 94305-5080, United States.

出版信息

Anal Chem. 2016 May 17;88(10):5542-8. doi: 10.1021/acs.analchem.6b01212. Epub 2016 Apr 28.

Abstract

A method called nanotip ambient ionization mass spectrometry (NAIMS) is described, which applies high voltage between a tungsten nanotip and a metal plate to generate a plasma in which ionized analytes on the surface of the metal plate are directed to the inlet and analyzed by a mass spectrometer. The dependence of signal intensity is investigated as a function of the tip-to-plate distance, the tip size, the voltage applied at the tip, and the current. These parameters are separately optimized to achieve sensitivity or high spatial resolution. A partially observable Markov decision process is used to achieve a stabilized plasma as well as high ionization efficiency. As a proof of concept, the NAIMS technique has been applied to phenanthrene and caffeine samples for which the limits of detection were determined to be 0.14 fmol for phenanthrene and 4 amol for caffeine and to a printed caffeine pattern for which a spatial resolution of 8 ± 2 μm, and the best resolution of 5 μm, was demonstrated. The limitations of NAIMS are also discussed.

摘要

一种名为纳米尖端环境电离质谱(NAIMS)的方法被描述,该方法在钨纳米尖端和金属板之间施加高压,在其中产生等离子体,使金属板表面上的被分析物离子化,并被质谱仪分析。研究了信号强度作为尖端到平板距离、尖端尺寸、尖端施加的电压和电流的函数的依赖性。这些参数分别进行优化以实现灵敏度或高空间分辨率。部分可观测马尔可夫决策过程用于实现稳定的等离子体以及高的离化效率。作为概念验证,已经将 NAIMS 技术应用于菲和咖啡因样品,对于菲,检测限确定为 0.14 fmol,对于咖啡因,检测限确定为 4 amol,并且对于印刷的咖啡因图案,证明了 8 ± 2 μm 的空间分辨率,最佳分辨率为 5 μm。还讨论了 NAIMS 的局限性。

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