Leibniz-Institut für Analytische Wissenschaften - ISAS - e.V., Bunsen-Kirchhoff-Straße 11, 44139 Dortmund, Germany.
Analytical Chemistry Research Group (FQM-323), Department of Physical and Analytical Chemistry, University of Jaén, Campus Las Lagunillas, Edif. B-3, 23071 Jaén, Spain.
Anal Chem. 2020 Nov 17;92(22):15212-15220. doi: 10.1021/acs.analchem.0c03839. Epub 2020 Nov 2.
Ionization mechanisms of different lipid classes and other hydrophobic compounds have been evaluated in an ambient air laser-desorption flexible microtube plasma ionization (LD-FμTPi) setup, without sample manipulation. Lipids require a minimum laser fluency of 27 W/mm for efficient desorption and detection, providing the possibility for temperature-programmed laser desorption of different lipid classes. The flexible microtube plasma (FμTP) produces oxygen addition to double bonds, even to polyunsaturated molecules. The characteristic fragmentation pattern of phospholipids consisting of the neutral loss of the phosphocholine head group was verified. The formation of dimers due to hydrogen bonding and dispersion forces was observed as well. In this sense, soft ionization capabilities of the FμTP were proven in both ion modes. Ambient air mass spectrometry methods often suffer from decreased reproducibility, for instance, due to changing atmospheric conditions or sensitive positioning of the ion source. It was shown that neutrals become increasingly unstable above a distance of 7 ± 1 mm to the spectrometer's inlet, providing estimates for the free volume in LD-FμTPi MS. In this sense, no guided transport is required. The ion plume ejected from the plasma can be altered by applying a bias voltage to the copper substrate. Ions can be detected at -950 V, 300 V (negative ion mode) and -400 V, 900 V (positive ion mode), respectively. The ions are guided through an internal electric field gradient of the FμTP that arises from charged capillary walls, ideal for ion detection. In conclusion, this makes the method fast, robust, and flexible.
在环境空气激光解吸柔性微管等离子体电离(LD-FμTPi)装置中,无需样品处理,评估了不同脂质类和其他疏水性化合物的电离机制。脂质需要至少 27 W/mm 的激光强度才能实现有效的解吸和检测,从而为不同脂质类的程序升温激光解吸提供了可能性。柔性微管等离子体(FμTP)可使双键甚至多不饱和分子发生氧加成。验证了由磷酸胆碱头部基团中性丢失组成的磷脂特征碎裂模式。还观察到氢键和分散力导致的二聚体形成。在这两种离子模式下,FμTP 都具有软电离能力。环境空气质谱方法的重现性往往较差,例如由于大气条件变化或离子源的敏感定位。结果表明,中性物质在距光谱仪入口 7 ± 1mm 以上的距离时变得越来越不稳定,这为 LD-FμTPi MS 中的自由体积提供了估计。在这方面,不需要引导传输。通过向铜基底施加偏置电压,可以改变从等离子体中喷出的离子羽流。可以在-950V、300V(负离子模式)和-400V、900V(正离子模式)下检测到离子。离子通过 FμTP 内部的电场梯度引导,这是由于带电的毛细管壁产生的,非常适合离子检测。总之,这使得该方法快速、稳健且灵活。