Particle size distribution is not the major factor explaining variable analyte transmission efficiency in liquid chromatography/particle beam/mass spectrometry
- 1 January 1995
- journal article
- Published by Wiley in Rapid Communications in Mass Spectrometry
- Vol. 9 (2) , 133-137
- https://doi.org/10.1002/rcm.1290090206
Abstract
We characterized the particle size distribution and the analyte transmission efficiency of a liquid chromatography/particle beam/mass spectrometry (LC/PB/MS) system as a function of experimental variations normally used to optimize the LC/PB/MS system. The particle size distribution was evaluated using an electrical differential mobility particle sizer (DMPS) and both the DMPS and the mass spectrometer were used to evaluate transmission. The latter results were correlated to provide evidence related to mechanisms which contribute to poor sample transmission. Addition of ammonium acetate buffer did not increase the aerosol particle riean diameter. However, it did lead to significant increases in caffeine transmission efficiency observed in both the DMPS and the mass spectrometer. Our results were interpreted to suggest a possible electrostatic cause for quantitative anomalies in LC/PB/MS rather than simple mass discrimination in the particle beam momentum separator.Keywords
This publication has 8 references indexed in Scilit:
- Detection and characterization of fumonisin mycotoxins as their methyl esters by liquid chromatography/particle‐beam mass spectrometryRapid Communications in Mass Spectrometry, 1993
- Mass transport and calibration in liquid chromatography particle beam mass spectrometryJournal of the American Society for Mass Spectrometry, 1992
- Investigation of enhanced ion abundances from a carrier process in high-performance liquid chromatography particle beam mass spectrometryJournal of the American Society for Mass Spectrometry, 1990
- Papers Available On Optical Fiber MeasurementsApplied Optics, 1989
- Subject indexSynthetic Metals, 1989
- Performance of an improved monodisperse aerosol generation interface for liquid chromatography/mass spectrometryAnalytical Chemistry, 1988
- Monodisperse aerosol generation interface for combining liquid chromatography with mass spectroscopyAnalytical Chemistry, 1984
- Continuous flow, single-particle-counting condensation nucleus counterJournal of Aerosol Science, 1980