Xia Bing, Gao Yuanji, Ji Baocheng, Ma Fengwei, Ding Lisheng, Zhou Yan
Chengdu Institute of Biology, Chinese Academy of Sciences, Chengdu, 610041, People's Republic of China.
J Am Soc Mass Spectrom. 2018 Mar;29(3):573-580. doi: 10.1007/s13361-017-1873-y. Epub 2018 Jan 25.
Electrospray ionization mass spectrometry (ESI-MS) technique has limitations in analysis of compounds that are dissolved in nonpolar solvents. In this study, ambient ionization of compounds in solvents that are not "friendly" to electrospray ionization, such as n-hexane, is achieved by conductive nanomaterials spray ionization (CNMSI) on nanomaterial emitters, including carbon nanotubes paper and mesodendritic silver covered metal, which applies high voltages to emitters made of these materials without the assistance of polar solvents. Although the time intensity curves (TIC) commonly vary from 4.5% to 23.7% over analyses, protonated molecular ions were found to be the most abundant species, demonstrating good reproducibility of the technique in terms of ionized species. Higher mass spectrometric responses are observed in analyzing nonpolar systems than polar systems. 2-Methoxyacetophenone, 4-methylacetophenone, benzothiazole, quinolone, and cycloheptanone as low as 2 pg in n-hexane can be directly detected using the developed method. The developed technique expands the analysis capability of ESI-MS for direct, online analysis of nonpolar systems, such as low polarity extracts, normal phase liquid chromatography eluates, and synthetic mixtures. Graphical Abstract.
电喷雾电离质谱(ESI-MS)技术在分析溶解于非极性溶剂中的化合物时存在局限性。在本研究中,通过在包括碳纳米管纸和树枝状银包覆金属在内的纳米材料发射器上进行导电纳米材料喷雾电离(CNMSI),实现了对诸如正己烷等对电喷雾电离“不友好”的溶剂中化合物的常压电离,该方法在无需极性溶剂辅助的情况下,对由这些材料制成的发射器施加高电压。尽管在多次分析中时间强度曲线(TIC)通常在4.5%至23.7%之间变化,但发现质子化分子离子是最丰富的物种,这表明该技术在离子化物种方面具有良好的重现性。在分析非极性体系时观察到比极性体系更高的质谱响应。使用所开发的方法可以直接检测正己烷中低至2 pg的2-甲氧基苯乙酮、4-甲基苯乙酮、苯并噻唑、喹诺酮和环庚酮。所开发的技术扩展了ESI-MS对非极性体系进行直接在线分析的能力,如低极性提取物、正相液相色谱洗脱液和合成混合物。图形摘要。