Szmigielski Rafal, Surratt Jason D, Vermeylen Reinhilde, Szmigielska Katarzyna, Kroll Jesse H, Ng Nga L, Murphy Shane M, Sorooshian Armin, Seinfeld John H, Claeys Magda
Department of Pharmaceutical Sciences, University of Antwerp (Campus Drie Eiken), Universiteitsplein 1, BE-2610 Antwerp, Belgium.
J Mass Spectrom. 2007 Jan;42(1):101-16. doi: 10.1002/jms.1146.
In the present work, we have characterized in detail the chemical structures of secondary organic aerosol (SOA) components that were generated in a smog chamber and result from the photooxidation of isoprene under high-NO(x) conditions typical for a polluted atmosphere. Isoprene high-NO(x) SOA contains 2-methylglyceric acid (2-MG) and oligoester derivatives thereof. Trimethylsilylation, in combination with capillary gas chromatography (GC)/ion trap mass spectrometry (MS) and detailed interpretation of the MS data, allowed structural characterization the polar oxygenated compounds present in isoprene SOA up to 2-MG trimers. GC separation was achieved between 2-MG linear and branched dimers or trimers, as well as between the 2-MG linear dimer and isomeric mono-acetate derivatives thereof. The electron ionization (EI) spectra of the trimethylsilyl derivatives contain a wealth of structural information, including information about the molecular weight (MW), oligoester linkages, terminal carboxylic and hydroxymethyl groups, and esterification sites. Only part of this information can be achieved with a soft ionization technique such as electrospray (ESI) in combination with collision-induced dissociation (CID). The methane chemical ionization (CI) data were used to obtain supporting MW information. Interesting EI spectral differences were observed between the trimethylsilyl derivatives of 2-MG linear and branched dimers or trimers and between 2-MG linear dimer mono-acetate isomers.
在本研究中,我们详细表征了烟雾箱中生成的二次有机气溶胶(SOA)组分的化学结构,这些组分是异戊二烯在污染大气典型的高氮氧化物(NOₓ)条件下光氧化的产物。异戊二烯高NOₓ SOA包含2-甲基甘油酸(2-MG)及其低聚酯衍生物。三甲基硅烷化结合毛细管气相色谱(GC)/离子阱质谱(MS)以及对MS数据的详细解读,能够对异戊二烯SOA中存在的直至2-MG三聚体的极性含氧化合物进行结构表征。实现了2-MG线性和支化二聚体或三聚体之间以及2-MG线性二聚体与其异构单乙酸酯衍生物之间的GC分离。三甲基硅烷基衍生物的电子电离(EI)光谱包含丰富的结构信息,包括分子量(MW)、低聚酯键、末端羧基和羟甲基以及酯化位点的信息。只有部分此类信息可以通过诸如电喷雾(ESI)结合碰撞诱导解离(CID)的软电离技术获得。甲烷化学电离(CI)数据用于获取辅助MW信息。在2-MG线性和支化二聚体或三聚体的三甲基硅烷基衍生物之间以及2-MG线性二聚体单乙酸酯异构体之间观察到了有趣的EI光谱差异。