Space Charge Effects on Ion Mobility Spectrometry
Journal Article
·
· Journal of the American Society for Mass Spectrometry
We study the space charge limited maximal current density j″ of mobility-selected ions that can be transmitted in ion mobility spectrometry (IMS). Theory and experiments focus on differential mobility analyzers (DMAs), but are readily generalizable to other IMS devices. Repulsion between the ions in the cloud leads to beam spreading, with significant broadening once the ion number density n becomes comparable to the space charge saturation limit n{sub sat} = ε{sub o}E{sub o}/(eΔ). Δ is the distance traversed by the ions in the direction of an externally imposed electric field E{sub o}, and e is the charge on each ion. For ions of electrical mobility Z, j″ is then limited below j″{sub sat} = ZE{sub o}en{sub sat} = Zε{sub o}E{sub o}{sup 2}/Δ. A theory including diffusion and space charge effects is developed that reduces to Burgers’ exactly solvable equation. The theory is tested in experiments with room temperature electrosprays (ES) of 100 mM [ethyl{sub 3}N{sup +}-formate{sup −}] in methanol. This spray produces primarily a single ionic species at very high initial concentration n, which may be tuned above or below n{sub sat} by varying the distance from the ES emitter to the inlet slit of the DMA. Mobility-selected ion densities n > 3.10{sup 8} ions/cm{sup 3} are achieved, with n~n{sub sat}, and with drastically broadened mobility peak shapes having the approximate top hat-predicted shapes. However, the largest n values approaching n{sub sat} are not quantitatively measurable because the densest sprays do not fill the outlet slit length. .
- OSTI ID:
- 22925299
- Journal Information:
- Journal of the American Society for Mass Spectrometry, Journal Name: Journal of the American Society for Mass Spectrometry Journal Issue: 6 Vol. 30; ISSN 1044-0305; ISSN JAMSEF
- Country of Publication:
- United States
- Language:
- English
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