Rapid Communications in Mass Spectrometry · 2011 · 40 citations · 23 references
EngineeringDirect AnalysisIon Mobility SpectrometryChemistryNew FeaturesSpectrochemical AnalysisEnvironmental ChemistryChemical EngineeringAnalytical InstrumentationGas ChromatographyEnvironmental Analytical ChemistryAnalytical ChemistryToxicologyLiquid ChromatographyInstrumentationBiophysicsChromatographyChromatographic AnalysisGlass SurfacesEnvironmental EngineeringSpectroscopyMass SpectrometryForensic ToxicologyEnvironmental ToxicologyMedicineReal TimeDrug Analysis
The present study is a first step towards the unexplored capabilities of Direct Analysis in Real Time (DART) mass spectrometry (MS) arising from the possibility of the desorption at an angle: scanning analysis of surfaces, including the coupling of thin-layer chromatography (TLC) with DART-MS, and a more sensitive analysis due to the preliminary concentration of analytes dissolved in large volumes of liquids on glass surfaces. In order to select the most favorable conditions for DART-MS analysis, proper positioning of samples is important. Therefore, a simple and cheap technique for the visualization of the impact region of the DART gas stream onto a substrate was developed. A filter paper or TLC plate, previously loaded with the analyte, was immersed in a derivatization solution. On this substrate, owing to the impact of the hot DART gas, reaction of the analyte to a colored product occurred. An improved capability of detection of DART-MS for the analysis of liquids was demonstrated by applying large volumes of model solutions of coumaphos into small glass vessels and drying these solutions prior to DART-MS analysis under ambient conditions. This allowed the introduction of, by up to more than two orders of magnitude, increased quantities of analyte compared with the conventional DART-MS analysis of liquids. Through this improved detectability, the capabilities of DART-MS in trace analysis could be strengthened.
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Facundo M. Fernández, Robert B. Cody, Michael D. Green et al. · ChemMedChem · 2006 · 214 citations
Shaoxia Yu, Elizabeth A. Crawford, Joe Tice et al. · Analytical Chemistry · 2008 · 201 citations
Sample Treatment, Biological Mass Spectrometry, Direct Analysis +22