Biosystems Research Complex, Department of Chemistry, Clemson University, Clemson, SC, 29634, USA,
Anal Bioanal Chem. 2013 Oct;405(25):8171-84. doi: 10.1007/s00216-013-7216-3. Epub 2013 Jul 23.
A novel approach to ambient desorption/ionization mass spectrometry (ADI-MS) is described, based on a recently developed liquid sampling-atmospheric pressure glow discharge (LS-APGD) ionization source. The device is essentially unmodified relative to its implementation in elemental mass spectrometry, where the operational space is characterized by low operation power (<10 W) and low solution delivery rates (<50 μL min(-1)). In this implementation, the plasma is produced between a Ni anode and an electrolytic liquid (1 M HNO3) cathode flowing through a glass capillary that is angled towards the sample surface, at a distance of ~2 mm away. Analyte species can be desorbed/ionized from neat solution residues and complex solid samples. The ADI-LS-APGD source is mounted onto the source interface of a Thermo Finnigan LCQ Advantage Max quadrupole ion trap mass spectrometer without modifications to the instrument faceplate or ion optics. Described here is the initial evaluation of the roles of source geometry and working parameters, including electrolytic solution composition and plasma current, on the response of caffeine residues, with preliminary limits of detection based on the relative standard deviation of the spectral background suggested to be on the 10-pg level. Demonstrative spectra are presented for green tea extracts and raw leaves, coffee beans, a dried (raw) tobacco leaf, an analgesic tablet, and paper currency. Versatility is further revealed through the determination of components in common cigarette smoke. In each case, the spectra are characterized by (M + H)(+) species of the expected constituents. The capacity for a single source to perform both in solution and particulate elemental analysis (as shown previously) and ADI of molecular species is unique in the realm of mass spectrometry.
一种新颖的环境解吸/电离质谱(ADI-MS)方法,基于最近开发的液体采样-大气压辉光放电(LS-APGD)离子源。该设备相对于其在元素质谱中的应用几乎没有改变,在元素质谱中,工作空间的特点是操作功率低(<10 W)和溶液输送率低(<50 μL min(-1))。在这种应用中,等离子体在 Ni 阳极和通过玻璃毛细管流动的电解液体(1 M HNO3)阴极之间产生,玻璃毛细管朝向样品表面倾斜,距离约为 2 毫米。分析物可以从纯溶液残留物和复杂的固体样品中解吸/电离。ADI-LS-APGD 源安装在 Thermo Finnigan LCQ Advantage Max 四极离子阱质谱仪的源接口上,而仪器面板或离子光学器件没有进行任何修改。本文介绍了源几何形状和工作参数的初步评估,包括电解液组成和等离子体电流,对咖啡因残留物响应的影响,初步检测限基于光谱背景的相对标准偏差建议为 10-pg 水平。为绿茶提取物和生叶、咖啡豆、干燥(生)烟叶、止痛片和纸币提供了演示性光谱。通过确定普通香烟烟雾中的成分进一步展示了其多功能性。在每种情况下,光谱都具有预期成分的(M + H)(+)物种特征。单个源在溶液和颗粒元素分析(如前所述)以及分子物种的 ADI 中都具有独特的性能,这在质谱领域是独一无二的。