Université de Rennes 1, CNRS ISCR (Institut des Sciences Chimiques de Rennes) (UMR CNRS 6226), Campus de Beaulieu, 263 avenue du Général Leclerc, Rennes, Cedex 35042, France.
Université de Rennes 1, CNRS IETR (Institut d'Electronique et des Technologies du numéRique) (UMR CNRS 6164), Campus de Beaulieu, 263 avenue du Général Leclerc, Rennes, Cedex 35042, France.
J Mass Spectrom. 2021;56(5):e4725. doi: 10.1002/jms.4725.
Cold-Spray Ionization mass spectrometry (CSI-MS) that can be compared to an electrospray ionization (ESI) source acting with a nebulizing gas cooled by liquid nitrogen is used for analyzing reline as Deep Eutectic Solvent (DES). The association of cholinium chloride salts with urea molecules is evidenced in negative CSI-MS through the chloride adduct formation. The structure of the supramolecular assemblies forming the reline ions that are observed on CSI mass spectra is rationalized by chemical quantum calculations. The theoretical studies indicate that the ionic network organization is only supported by a maximization of hydrogen bonds of the chlorides with the hydroxyl and methyl moieties of the cholinium cations and the amino groups of urea. The studies of gas-phase fragmentation of the supra-molecular ionic assemblies detected in CSI-MS are performed using the in-source collision-induced dissociation experiments. The experimental measurements in CSI-MS, interpreted at the light of the molecular modelization results, suggest that the insertion of urea in adducts of chlorides with cholinium cations does not lead to the most stable ions.
冷喷雾电离质谱(CSI-MS)可与带有液氮冷却的雾化气体的电喷雾电离(ESI)源相媲美,用于分析作为深共晶溶剂(DES)的再衬里。通过氯化物加合物的形成,在负 CSI-MS 中证明了氯化胆碱盐与尿素分子的缔合。通过化学量子计算对形成再衬里离子的超分子组装的结构进行了合理化,这些离子在 CSI 质谱上观察到。理论研究表明,只有通过氯化物与胆碱阳离子的羟基和甲基部分以及尿素的氨基的氢键最大化,才能支持离子网络组织。使用源内碰撞诱导解离实验对在 CSI-MS 中检测到的超分子离子组装的气相碎裂进行了研究。CSI-MS 中的实验测量,根据分子模型化结果进行解释,表明尿素插入氯化物与胆碱阳离子的加合物中不会导致最稳定的离子。