The Department of Chemistry, Biochemistry, and Physics, The University of Tampa, Tampa, FL, USA.
Analyst. 2016 Jun 21;141(12):3811-20. doi: 10.1039/c6an00176a. Epub 2016 Mar 16.
A microwave plasma was used for direct ambient ionization mass spectrometry of solid substrates, rapidly yielding atomic spectra without sample digestion or pre-treatment. Further, molecular spectra for the organic components of the substrate were obtained simultaneously, in an ambient ionization format. Initial characterization of the microwave plasma coupling to an ion trap mass spectrometer was carried out using solution standards and a microwave plasma torch (MPT) configuration. The configuration of the microwave plasma was then optimized for ambient ionization. The atomic and organic composition for samples applicable to nuclear and conventional forensic screening, including explosive/radionuclide mixtures and inorganic/organic gunshot residue component mixtures were successfully determined. The technologies employed are readily fieldable; the feasibility of a multimode ion source that could be coupled with a portable ion trap mass spectrometer for rapid, on-site, elemental, isotopic, and molecular screening of samples is demonstrated.
采用微波等离子体对固体基质进行直接环境电离质谱分析,无需样品消解或预处理即可快速获得原子光谱。此外,还同时以环境电离的形式获得了基质有机成分的分子光谱。使用溶液标准品和微波等离子体炬(MPT)配置对微波等离子体与离子阱质谱仪的耦合进行了初步表征。然后对环境电离进行了微波等离子体的优化配置。成功确定了适用于核和常规法医筛选的样品的原子和有机组成,包括爆炸物/放射性核素混合物和无机/有机射击残留物成分混合物。所采用的技术易于现场应用;演示了一种多模式离子源的可行性,该离子源可以与便携式离子阱质谱仪耦合,用于对样品进行快速、现场、元素、同位素和分子筛选。