Department of Chemistry , College of William and Mary , Williamsburg , Virginia 23185 , United States.
Department of Chemistry , Oregon State University , 153 Gilbert Hall , Corvallis , Oregon 97331-4003 , United States.
Environ Sci Technol. 2019 Jul 2;53(13):7604-7612. doi: 10.1021/acs.est.9b02077. Epub 2019 Jun 21.
Characterizing the chemical composition of organic aerosols can elucidate aging mechanisms as well as the chemical and physical properties of the aerosol. However, the high chemical complexity and often low atmospheric abundance present a difficult analytical challenge. Milligrams or more of material may be needed for speciated spectroscopic analysis. In contrast, mass spectrometry provides a very sensitive platform but limited structural information. Here, we combine the strengths of mass spectrometry and infrared (IR) action spectroscopy to generate characteristic IR spectra of individual, mass-isolated ion populations. Soft ionization combined with in situ infrared ion spectroscopy, using the tunable free-electron laser FELIX, provides detailed information on molecular structures and functional groups. We apply this technique, along with quantum mechanical modeling, to characterize organic molecules in secondary organic aerosol (SOA) formed from the ozonolysis of α-pinene. Spectral overlap with a standard is used to identify cis-pinonic acid. We also demonstrate the characterization of isomers for multiple SOA products using both quantum mechanical computations and analyses of fragment ion spectra. These results demonstrate the detailed structural information on isolated ions obtained by combining mass spectrometry with fingerprint IR spectroscopy.
表征有机气溶胶的化学成分可以阐明老化机制以及气溶胶的化学和物理性质。然而,高化学复杂性和通常较低的大气丰度带来了分析上的困难。毫克级或更多的物质可能需要进行特定光谱分析。相比之下,质谱提供了非常灵敏的平台,但提供的结构信息有限。在这里,我们将质谱和红外(IR)作用光谱的优势结合起来,生成单个质量分离离子群体的特征 IR 光谱。软电离与使用可调谐自由电子激光 FELIX 的原位红外离子光谱相结合,提供了有关分子结构和官能团的详细信息。我们将这项技术与量子力学建模结合起来,用于表征臭氧氧化α-蒎烯形成的二次有机气溶胶(SOA)中的有机分子。通过与标准品的光谱重叠来鉴定顺式-松脂酸。我们还通过量子力学计算和碎片离子光谱分析来证明多种 SOA 产物异构体的特征。这些结果证明了通过将质谱与指纹 IR 光谱相结合获得的分离离子的详细结构信息。