Department of Chemistry, Purdue University, West Lafayette, Indiana 47907, United States.
Department of Aeronautics and Aerospace Engineering, Purdue University, West Lafayette, Indiana 47907, United States.
J Phys Chem A. 2023 Feb 23;127(7):1656-1674. doi: 10.1021/acs.jpca.2c06459. Epub 2023 Feb 10.
Secondary organic aerosol (SOA) formed through multiphase atmospheric chemistry makes up a large fraction of airborne particles. The chemical composition and molecular structures of SOA constituents vary between different emission sources and aging processes in the atmosphere, which complicates their identification. In this work, we employ drift tube ion mobility spectrometry with quadrupole time-of-flight mass spectrometry (IM-MS) detection for rapid gas-phase separation and multidimensional characterization of isomers in two biogenic SOAs produced from ozonolysis of isomeric monoterpenes, d-limonene (LSOA) and α-pinene (PSOA). SOA samples were ionized using electrospray ionization (ESI) and characterized using IM-MS in both positive and negative ionization modes. The IM-derived collision cross sections in nitrogen gas (CCS ) for individual SOA components were obtained using multifield and single-field measurements. A novel application of IM multiplexing/high-resolution demultiplexing methodology was employed to increase sensitivity, improve peak shapes, and augment mobility baseline resolution, which revealed several isomeric structures for the measured ions. For LSOA and PSOA samples, we report significant structural differences of the isomer structures. Molecular structural calculations using density functional theory combined with the theoretical modeling of CCS values provide insights into the structural differences between LSOA and PSOA constituents. The average CCS values for monomeric SOA components observed as [M + Na] ions are 3-6% higher than those of their [M - H] counterparts. Meanwhile, dimeric and trimeric isomer components in both samples showed an inverse trend with the relevant values of [M - H] ions being 3-7% higher than their [M + Na] counterparts, respectively. The results indicate that the structures of Na-coordinated oligomeric ions are more compact than those of the corresponding deprotonated species. The coordination with Na occurs on the oxygen atoms of the carbonyl groups leading to a compact configuration. Meanwhile, deprotonated molecules have higher CCS values due to their elongated structures in the gas phase. Therefore, CCS values of isomers in SOA mixtures depend strongly on the mode of ionization in ESI. Additionally, PSOA monomers and dimers exhibit larger CCS values (1-4%) than their LSOA counterparts owing to more rigid structures. A cyclobutane ring is present with functional groups pointing in opposite directions in PSOA compounds, as compared to noncyclic flexible LSOA structures, forming more compact ions in the gas phase. Lastly, we investigated the effects of direct photolysis on the chemical transformations of selected individual PSOA components. We use IM-MS to reveal structural changes associated with aerosol aging by photolysis. This study illustrates the detailed molecular and structural descriptors for the detection and annotation of structural isomers in complex SOA mixtures.
次生有机气溶胶(SOA)通过多相大气化学形成,占空气中颗粒的很大一部分。SOA 成分的化学组成和分子结构在不同的排放源和大气老化过程中有所不同,这使得它们的识别变得复杂。在这项工作中,我们使用带有四级杆飞行时间质谱(Q-TOF-MS)检测的漂移管离子迁移谱(IM-MS)进行快速气相分离和两种由异戊二烯臭氧分解产生的生源 SOA(柠檬烯 LSOA 和 α-蒎烯 PSOA)中异构体的多维特征化。使用电喷雾电离(ESI)对 SOA 样品进行电离,并在正、负离子模式下使用 IM-MS 进行特征化。使用多场和单场测量获得了单个 SOA 成分在氮气中的离子迁移率截面(CCS)。采用 IM 多路复用/高分辨率解复用方法的新应用提高了灵敏度、改善了峰形并提高了迁移率基线分辨率,从而揭示了所测离子的几种异构体结构。对于 LSOA 和 PSOA 样品,我们报告了异构结构的显著结构差异。使用密度泛函理论结合 CCS 值的理论建模进行分子结构计算,深入了解了 LSOA 和 PSOA 成分之间的结构差异。观察到作为[M + Na]+离子的单体 SOA 成分的平均 CCS 值比其[M - H]对应物高 3-6%。同时,两种样品中的二聚体和三聚体异构体成分呈相反趋势,相应的[M - H]离子的相关值比[M + Na]+离子高 3-7%。结果表明,Na 配位的低聚物离子的结构比相应的去质子化物种更紧凑。Na 的配位发生在羰基的氧原子上,导致紧凑的构型。同时,去质子化分子在气相中具有更高的 CCS 值,因为它们的结构在气相中是拉长的。因此,ESI 中离子化模式强烈影响 SOA 混合物中异构体的 CCS 值。此外,由于结构更刚性,PSOA 单体和二聚体的 CCS 值(1-4%)比 LSOA 对应物大。与非环状柔性 LSOA 结构相比,PSOA 化合物中存在一个环丁烷环,其官能团指向相反的方向,在气相中形成更紧凑的离子。最后,我们研究了直接光解对选定的 PSOA 成分的气溶胶老化的化学转化的影响。我们使用 IM-MS 揭示与光解相关的气溶胶老化的结构变化。本研究说明了用于检测和注释复杂 SOA 混合物中结构异构体的详细分子和结构描述符。