4.8 Article

Analytical characterization of the electrospray ion source in the nanoflow regime

Journal

ANALYTICAL CHEMISTRY
Volume 80, Issue 17, Pages 6573-6579

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/ac800683s

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Funding

  1. NIH National Center for Research Resources [RR018522]
  2. Environmental Molecular Sciences Laboratory
  3. Pacific Northwest National Laboratory (PNNL) in Richland
  4. DOE [AC05-76RLO 1830]

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A detailed characterization of a conventional low-flow electrospray ionization (ESI) source for mass spectrometry (MS) using solution compositions typical of reversedphase liquid chromatography is reported. Contrary to conventional wisdom, the pulsating regime consistently provided better ESI-MS performance than the cone-jet regime for the interface and experimental conditions studied. This observation is supported by additional measurements showing that a conventional heated capillary interface affords more efficient sampling and transmission for the charged aerosol generated by a pulsating electrospray. The pulsating electrospray provided relatively constant MS signal intensities over a wide range of voltages, while the signal decreased slightly with increasing voltage for the cone-jet electrospray. The MS signal also decreased with increasing emitter-interface distance for both pulsating and cone-jet electrosprays due to the expansion of the charged aerosol plume. At flow rates below 100 nL/min, the MS signal increased with increasing flow rate due to increased number of gas-phase ions produced. At flow rates greater than 100 nL/min, the signal reached a plateau due to decreasing ionization efficiency at larger flow rates. These results suggest approaches for improving MS interface performance for low-flow (nano- to micro-) electrosprays.

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