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冷电子电离(EI)不是标准EI的补充离子源。它是一种极具优势的替代离子源。

Cold Electron Ionization (EI) Is Not a Supplementary Ion Source to Standard EI. It is a Highly Superior Replacement Ion Source.

作者信息

Amirav Aviv, Fialkov Alexander B, Gordin Alexander, Elkabets Oneg, Margolin Eren Ksenia J

机构信息

School of Chemistry, Tel Aviv University, Tel Aviv 6997801, Israel.

Aviv Analytical Ltd., 24 Hanagar Street, Hod Hasharon 4527713, Israel.

出版信息

J Am Soc Mass Spectrom. 2021 Nov 3;32(11):2631-2635. doi: 10.1021/jasms.1c00241. Epub 2021 Oct 15.

Abstract

GC-MS usually employs a 70 eV electron ionization (EI) ion source, which provides mass spectra with detailed fragment ion information that are amenable for library search and identification with names and structures at the isomer level. However, conventional EI often suffers from low intensity or the absence of molecular ions, which reduces detection and identification capabilities in analyses. In an attempt to enhance the molecular ions, several softer ion sources are being used to supplement standard EI, including chemical ionization (CI), atmospheric pressure chemical ionization (APCI), field ionization (FI), photoionization (PI), and low electron energy EI. However, the most advantageous way to enhance molecular ions is to use cold EI, which employs 70 eV EI of cold molecules in supersonic molecular beams. Cold EI yields classical EI mass spectra with highly enhanced molecular ions, which still provides high detectability and library-searchable mass spectra. In this paper, we explain and discuss why cold EI is not a supplementary ion source to standard EI, but rather it is a highly superior replacement to standard EI. With cold EI, there is no need for standard EI or any other supplemental ion source. We describe 16 benefits and unique features of cold EI that not only yield better results for existing applications but also significantly extend the range of compounds and applications amenable for GC-MS analysis.

摘要

气相色谱-质谱联用仪(GC-MS)通常采用70电子伏特(eV)的电子电离(EI)离子源,该离子源能提供带有详细碎片离子信息的质谱图,便于进行库检索以及在异构体水平上通过名称和结构进行鉴定。然而,传统的EI常常存在分子离子强度低或缺失的问题,这降低了分析中的检测和鉴定能力。为了增强分子离子,人们正在使用几种较温和的离子源来补充标准EI,包括化学电离(CI)、大气压化学电离(APCI)、场电离(FI)、光电离(PI)和低电子能量EI。然而,增强分子离子的最有利方法是使用冷EI,它在超声分子束中对冷分子采用70 eV的EI。冷EI产生具有高度增强分子离子的经典EI质谱图,仍然具有高检测性和可用于库检索的质谱图。在本文中,我们解释并讨论为什么冷EI不是标准EI的补充离子源,而是标准EI的一种高度优越的替代品。有了冷EI,就不再需要标准EI或任何其他补充离子源。我们描述了冷EI的16个优点和独特特性,这些优点和特性不仅能为现有应用带来更好的结果,还能显著扩展适用于GC-MS分析的化合物和应用范围。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/447d/8589250/aa4d4e6146c7/js1c00241_0001.jpg

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