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Halo-shaped Flowing Atmospheric Pressure Afterglow – a Heavenly New Design for Simplified Sample Introduction and Improved Ionization in Ambient Mass Spectrometry

机译:晕形的流动大气压余辉–一种简化环境中质谱进样和简化电离的全新设计

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摘要

The flowing atmospheric pressure afterglow (FAPA) is a promising new source for atmospheric pressure, ambient desorption/ionization mass spectrometry. However, problems exist with reproducible sample introduction into the FAPA source. To overcome this limitation, a new FAPA geometry has been developed in which concentric tubular electrodes are utilized to form a halo-shaped discharge; this geometry has been termed the halo-FAPA or h-FAPA. With this new geometry, it is still possible to achieve direct desorption and ionization from a surface; however, sample introduction through the inner capillary is also possible and improves interaction between the sample material (solution, vapor, or aerosol) and the plasma to promote desorption and ionization. The h-FAPA operates with a helium gas flow of 0.60 L/min outer, 0.30 L/min inner, applied current of 30 mA at 200 V for 6 watts of power. In addition, separation of the discharge proper and sample material prevents perturbations to the plasma. Optical-emission characterization and gas rotational temperatures reveal that the temperature of the discharge is not significantly affected (< 3% change at 450K) by water vapor during solution-aerosol sample introduction. The primary mass-spectral background species are protonated water clusters, and the primary analyte ions are protonated molecular ions (M+H+). Flexibility of the new ambient sampling source is demonstrated by coupling it with a laser ablation unit, a concentric nebulizer and a droplet-on-demand system for sample introduction. A novel arrangement is also presented in which the central channel of the h-FAPA is used as the inlet to a mass spectrometer.
机译:流动的大气压余辉(FAPA)是大气压,环境解吸/电离质谱的有希望的新来源。但是,可复制的样品引入FAPA来源存在问题。为了克服这个限制,已经开发出一种新的FAPA几何形状,其中利用同心管状电极形成一个晕圈形放电。这种几何形状被称为卤素-FAPA或h-FAPA。有了这种新的几何形状,仍然有可能实现表面的直接脱附和电离。但是,也可以通过内部毛细管引入样品,并且可以改善样品材料(溶液,蒸气或气溶胶)与血浆之间的相互作用,从而促进解吸和电离。 h-FAPA在外部氦气流量为0.60 L / min,内部氦气流量为0.30 L / min的条件下工作,在200 V电压下施加6功率的电流为30 mA。另外,将适当的放电物质和样品材料分开可以防止对等离子体的干扰。光学发射特性和气体旋转温度表明,在引入溶液-气溶胶样品期间,水蒸气不会显着影响放电温度(在450K时变化<3%)。质谱的主要背景物种是质子化的水团簇,而主要的分析物离子是质子化的分子离子(M + H + )。通过将新的环境采样源与激光烧蚀单元,同心雾化器和用于样品引入的按需液滴系统耦合,可以证明其灵活性。还提出了一种新颖的布置,其中将h-FAPA的中央通道用作质谱仪的入口。

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