Schneiders Aurore L, Far Johann, Belova Lidia, Fry Allison, Covaci Adrian, Baker Erin S, De Pauw Edwin, Eppe Gauthier
Mass Spectrometry Laboratory, MolSys Research Unit, Chemistry Department, University of Liège, Liège 4000, Belgium.
Toxicological Centre, University of Antwerp, 2610 Wilrijk, Belgium.
J Am Soc Mass Spectrom. 2025 Apr 2;36(4):850-861. doi: 10.1021/jasms.5c00007. Epub 2025 Mar 5.
Per- and polyfluoroalkyl substances (PFAS) are contaminants of increasing concern, with over seven million compounds currently inventoried in the PubChem PFAS Tree. Recently, ion mobility spectrometry has been combined with liquid chromatography and high-resolution mass spectrometry (LC-IMS-HRMS) to assess PFAS. Interestingly, using negative electrospray ionization, perfluoroalkyl carboxylic acids (PFCAs) form homodimers ([2M-H]), a phenomenon observed with trapped, traveling wave, and drift-tube IMS. In addition to the limited research on their effect on analytical performance, there is little information on the conformations these dimers can adopt. This study aimed to propose most probable conformations for PFCA dimers. Based on qualitative analysis of how collision cross section (CCS) values change with the mass-to-charge ratio (/) of PFCA ions, the PFCA dimers were hypothesized to likely adopt a V-shaped structure. To support this assumption, geometry optimizations were performed to generate a set of conformers for each possible dimer. A CCS value was then calculated for each conformer using the trajectory method with Lennard-Jones and ion-quadrupole potentials. Among these conformers, at least one of the ten lowest-energy conformers identified for each dimer exhibited theoretical CCS values within a ±2% error margin compared to the experimental data, qualifying them as plausible structures for the dimers. Our findings revealed that the fluorinated alkyl chains in the dimers are close to each other due to a combination of C-F···O=C and C-F···F-C stabilizing interactions. These findings, together with supplementary investigations involving environmentally relevant cations, may offer valuable insights into the interactions and environmental behavior of PFAS.
全氟和多氟烷基物质(PFAS)是日益受到关注的污染物,目前在PubChem PFAS树中已登记的化合物超过700万种。最近,离子迁移谱已与液相色谱和高分辨率质谱(LC-IMS-HRMS)相结合来评估PFAS。有趣的是,使用负电喷雾电离时,全氟烷基羧酸(PFCA)会形成同二聚体([2M-H]),这种现象在阱式、行波和漂移管离子迁移谱中均有观察到。除了关于它们对分析性能影响的有限研究外,关于这些二聚体可能采取的构象的信息也很少。本研究旨在提出PFCA二聚体最可能的构象。基于对PFCA离子的碰撞截面(CCS)值如何随质荷比(/)变化的定性分析,推测PFCA二聚体可能采取V形结构。为支持这一假设,进行了几何优化以生成每个可能二聚体的一组构象异构体。然后使用具有 Lennard-Jones和离子四极势的轨迹方法为每个构象异构体计算CCS值。在这些构象异构体中,为每个二聚体确定的十个最低能量构象异构体中至少有一个的理论CCS值与实验数据相比误差在±2%以内,这使它们有资格作为二聚体的合理结构。我们的研究结果表明,由于C-F···O=C和C-F···F-C稳定相互作用的共同作用,二聚体中的氟化烷基链彼此靠近。这些发现,连同涉及环境相关阳离子的补充研究,可能为PFAS的相互作用和环境行为提供有价值的见解。