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改进的用于分析异戊二烯衍生有机硫酸盐的 UHPLC-MS/MS 方法。

Improved UHPLC-MS/MS Methods for Analysis of Isoprene-Derived Organosulfates.

机构信息

Institute of Organic Chemistry , Polish Academy of Sciences , Warsaw 01-224 , Poland.

Institute of Physical Chemistry , Polish Academy of Sciences , Warsaw 01-224 , Poland.

出版信息

Anal Chem. 2018 Mar 6;90(5):3416-3423. doi: 10.1021/acs.analchem.7b05060. Epub 2018 Feb 20.

Abstract

Secondary organic aerosol (SOA) is an important yet not fully characterized constituent of atmospheric particulate matter. A number of different techniques and chromatographic methods are currently used for the analysis of SOA, so the comparison of results from different laboratories poses a challenge. So far, tentative structures have been suggested for many organosulfur compounds that have been identified as markers for the formation of SOA, including isoprene-derived organosulfates. Despite the effectiveness and robustness of LC-MS/MS analyses, the structural profiling of positional isomers of recently discovered organosulfates with molecular weights (MWs) of 214 and 212 from isoprene was entirely unsuccessful. Here, we developed a UHPLC combined with high-resolution tandem mass spectrometric method that significantly improves the separation efficiency and detection sensitivity of these compounds in aerosol matrices. We discovered that selection of the proper solvent for SOA extracts was a key factor in improving the separation parameters. Later, we took advantage of the enhanced sensitivity, combined with a short scan time window, to perform detailed structural mass-spectrometric studies. For the first time, we elucidate a number of isomers of the MW 214 and the MW 212 organosulfates and provide strong evidence for their molecular structures. The structure of trihydroxyketone sulfate MW 214 that we propose has not been previously reported. The methods we designed can be easily applied in other laboratories to foster an easy comparison of related qualitative and quantitative data obtained throughout the world.

摘要

次生有机气溶胶(SOA)是大气颗粒物中一种重要但尚未完全表征的成分。目前有许多不同的技术和色谱方法用于 SOA 的分析,因此不同实验室之间的结果比较具有挑战性。迄今为止,已经为许多已被确定为 SOA 形成标志物的有机硫化合物提出了暂定结构,包括异戊二烯衍生的有机硫酸盐。尽管 LC-MS/MS 分析非常有效和稳健,但对分子量为 214 和 212 的异戊二烯衍生的最近发现的有机硫酸盐的位置异构体的结构剖析完全不成功。在这里,我们开发了一种 UHPLC 与高分辨率串联质谱联用的方法,显著提高了这些化合物在气溶胶基质中的分离效率和检测灵敏度。我们发现,选择适当的 SOA 提取物溶剂是改善分离参数的关键因素。后来,我们利用增强的灵敏度,结合短的扫描时间窗口,进行详细的结构质谱研究。我们首次阐明了分子量为 214 和 212 的有机硫酸盐的一些异构体,并为它们的分子结构提供了有力的证据。我们提出的三羟基酮硫酸盐 MW 214 的结构以前没有报道过。我们设计的方法可以很容易地在其他实验室中应用,以促进世界各地获得的相关定性和定量数据的轻松比较。

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