location: Current position: Home >> Scientific Research >> Paper Publications

Design, simulation and evaluation of improved air amplifier incorporating an ion funnel for nano-ESI MS

Hits:

Indexed by:期刊论文

Date of Publication:2014-01-01

Journal:EUROPEAN JOURNAL OF MASS SPECTROMETRY

Included Journals:SCIE、Scopus

Volume:20

Issue:2

Page Number:143-154

ISSN No.:1469-0667

Key Words:ESI; nanoelectrospray; air amplifier; ion focusing; ion funnel; computational fluid dynamics; ion trajectory

Abstract:An improved air amplifier design that takes advantage of the combined effects of aerodynamic and electrodynamic focusing was developed to couple a nanoelectrospray ionisation (nano-ESI) source and the heated mass spectrometer inlet to improve the sensitivity of a mass spectrometer. The new design comprises an electrodynamic ion funnel integrated into the main air pathway of the air amplifier to more effectively focus and transmit gas-phase ions from the nano-ESI source into the heated mass spectrometer inlet. Numerical computational fluid dynamics simulations were carried out using a commercial software package, ANSYS FLUENT, to provide more detailed information about the device's performance. The gas flow field as well as the electric field patterns and the Lagrangian ion motion were conveniently simulated using this single package and custom-written, user-defined functions. Experimental results show a nearly five-fold improvement in reserpine ion intensity with the air amplifier operated at a nitrogen gauge pressure of 40 kPa and no direct current (DC) or radiofrequency (RF) potentials applied to the ion funnel when the distance between the electrospray emitter and sampling inlet tube was 24 mm, as compared to direct sample infusion from the same distance without the air amplifier. More importantly, a nearly three-fold additional gain in ion intensity was measured when both DC and RF potentials were co-applied, resulting in more than a 13-fold overall ion intensity gain which could be attributed to the combined air amplifier aerodynamic and ion funnel electrodynamic focusing effect.

Pre One:A novel hybrid patterning technique for micro and nanochannel fabrication by integrating hot embossing and inverse UV photolithography

Next One:Numerical simulation of Monte Carlo ion transport at atmospheric pressure within improved air amplifier geometry