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同位素丰度分析与精确质量分析在提供元素分子式信息能力方面的比较。

Comparison of Isotope Abundance Analysis and Accurate Mass Analysis in their Ability to Provide Elemental Formula Information.

作者信息

Alon Tal, Amirav Aviv

机构信息

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

Afeka School of Engineering, Tel Aviv, 6910717, Israel.

出版信息

J Am Soc Mass Spectrom. 2021 Apr 7;32(4):929-935. doi: 10.1021/jasms.0c00419. Epub 2021 Mar 29.

Abstract

Deriving elemental formulas from mass spectra used to be an exclusive feature provided only by expensive high-resolution mass spectrometry instruments. Nowadays this feature can be used on unit resolution quadrupole-based mass spectrometers (MS) combining isotope abundance analysis (IAA) and mass accuracy analysis (MAA) with surprising accuracy that is commonly lower than 1 ppm mass accuracy. In this Article, we assess the usefulness of both MAA and IAA in the elemental formula deriving process performed on unit resolution MS data with constant resolution across the / range. The methods' effective filtration power (EFP) are estimated along with their ability to provide useful elemental information under nonideal experimental conditions. The term effective mass accuracy (EMA) is introduced so that the identification power of IAA can be expressed in a familiar way and compared more readily to MAA. We found that IAA alone commonly has an EMA under 5 ppm. IAA and MAA work well together and provide improved results with median EMA < 1 ppm for calibrated MS or <3 ppm for uncalibrated MS. We have also found that even though these methods cannot be fully trusted to pinpoint the exact elemental formula under poor experimental conditions, IAA can still accurately provide the exact number of several heteroatoms such as sulfur, chlorine, and bromine, while MAA cannot. Under such conditions, a combination of both methods can also provide good insight into the amount of carbon, hydrogen, and other elements in the elemental formula.

摘要

从质谱图推导元素分子式曾经是只有昂贵的高分辨率质谱仪器才具备的独特功能。如今,这种功能可用于基于单位分辨率四极杆的质谱仪(MS),将同位素丰度分析(IAA)和质量精度分析(MAA)相结合,其准确度令人惊讶,通常低于1 ppm质量精度。在本文中,我们评估了MAA和IAA在对单位分辨率MS数据进行的元素分子式推导过程中的有用性,该数据在整个/范围内具有恒定分辨率。我们估计了这些方法的有效过滤能力(EFP)以及它们在非理想实验条件下提供有用元素信息的能力。引入了有效质量精度(EMA)这一术语,以便能够以熟悉的方式表达IAA的识别能力,并更易于与MAA进行比较。我们发现,单独使用IAA时,其EMA通常低于5 ppm。IAA和MAA配合良好,对于校准后的MS,中位数EMA < 1 ppm,对于未校准的MS,中位数EMA < 3 ppm,能提供更好的结果。我们还发现,尽管在实验条件较差的情况下不能完全依靠这些方法来精确确定确切的元素分子式,但IAA仍能准确提供硫、氯和溴等几种杂原子的确切数量,而MAA则不能。在这种情况下,两种方法的结合也能很好地了解元素分子式中碳、氢和其他元素的含量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9228/8154599/13647b72e404/js0c00419_0001.jpg

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