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通过囚禁离子淌度与傅里叶变换离子回旋共振质谱联用对土卫六霾类似物的结构研究

Structural Study of Analogues of Titan's Haze by Trapped Ion Mobility Coupled with a Fourier Transform Ion Cyclotron Mass Spectrometer.

作者信息

Rüger Christopher P, Maillard Julien, Le Maître Johann, Ridgeway Mark, Thompson Christopher J, Schmitz-Afonso Isabelle, Gautier Thomas, Carrasco Nathalie, Park Melvin A, Giusti Pierre, Afonso Carlos

机构信息

CNRS/Université de Rouen, UMR 6014 COBRA, 1 rue Tesnière, 76821, Mont Saint Aignan Cedex, France.

LATMOS/IPSL, Université Versailles St Quentin, UPMC Université Paris 06, CNRS, 11 blvd d'Alembert, 78280 Guyancourt, France.

出版信息

J Am Soc Mass Spectrom. 2019 Jul;30(7):1169-1173. doi: 10.1007/s13361-019-02205-7. Epub 2019 May 7.

Abstract

The aerosols present in the atmosphere of the Saturn's moon Titan are of particular planetary science interest and several spacecraft missions are already allowed to gather spectroscopic data. Titan haze's analogs, so-called tholins, were produced on earth to push forward the comprehension of their formation and properties. In this study, this highly complex mixture was analyzed here for the first time by trapped ion mobility spectrometry coupled to ultra-high resolution mass spectrometry (FTICR MS). Electrospray ionization revealed the characteristic CHN-class components, with CHN and DBE 6-7 most abundant. Deploying specialized visualization, enabled by accurate mass measurements and elemental composition assignments, the adapted Kendrick mass defect analysis highlights the CHN homolog series, whereas the nitrogen-modified van Krevelen diagram exhibits a clear trend towards H/C 1.5 and N/C 0.5. More interestingly, the representation of m/z versus collision cross section (CCS) allowed hypothesizing a ramified N-PAH structural motif. State-of-the-art IMS is currently not able to resolve the isomeric continuum of ultra-complex mixtures; thus, peak parameters other than the CCS value are explored. As such, analyzing the mobility peak width versus m/z shows a linear increase in isomeric diversity between m/z 170 and 350 and a near plateau in diversity at higher m/z for the N-PAH-like structure. Due to the high complexity of the sample, these structural insights are only to be revealed by TIMS-FTICR MS.

摘要

土星卫星土卫六大气中的气溶胶具有特殊的行星科学研究价值,已有多项航天器任务获准收集光谱数据。为了推进对土卫六霾类似物(即所谓的“索林”)形成过程和性质的理解,人们在地球上制备了这些类似物。在本研究中,首次采用阱式离子淌度光谱法结合超高分辨率质谱法(傅里叶变换离子回旋共振质谱,FTICR MS)对这种高度复杂的混合物进行了分析。电喷雾电离揭示了其特征性的CHN类成分,其中CHN和双键等价物(DBE)为6 - 7的成分最为丰富。通过精确质量测量和元素组成归属实现的专门可视化技术,适配的肯德里克质量亏损分析突出了CHN同系物系列,而氮修饰的范克雷维伦图呈现出明显的趋势,即氢碳比为1.5,氮碳比为0.5。更有趣的是,质荷比(m/z)与碰撞截面(CCS)的关系图使得人们能够推测出一种分支状的含氮多环芳烃(N - PAH)结构基序。目前,最先进的离子淌度光谱法尚无法解析超复杂混合物的异构体连续统;因此,人们探索了除CCS值之外的峰参数。就此而言,分析淌度峰宽与m/z的关系表明,对于类N - PAH结构,在m/z 170至350之间异构体多样性呈线性增加,而在更高的m/z处多样性接近平稳。由于样品的高度复杂性,这些结构见解只能通过行波离子淌度质谱 - 傅里叶变换离子回旋共振质谱(TIMS - FTICR MS)揭示。

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