High-resolution differential ion mobility separations using helium-rich gases
- PMID: 20151640
- PMCID: PMC2945891
- DOI: 10.1021/ac902852a
High-resolution differential ion mobility separations using helium-rich gases
Abstract
Analyses of complex mixtures and characterization of ions increasingly involve gas-phase separations by ion mobility spectrometry (IMS) and particularly differential or field asymmetric waveform IMS (FAIMS) based on the difference of ion mobility in strong and weak electric fields. The key advantage of FAIMS is substantial orthogonality to mass spectrometry (MS), which makes FAIMS/MS hybrid a powerful analytical platform of broad utility. However, the potential of FAIMS has been constrained by limited resolution. Here, we report that the use of gas mixtures comprising up to 75% He dramatically increases the FAIMS separation capability, with the resolving power for peptides and peak capacity for protein digests reaching and exceeding 100. The resolution gains extend to small molecules, where previously unresolved isomers can now be separated. These performance levels open major new applications of FAIMS in proteomic and other biomolecular analyses.
Figures






References
-
- Aebersold R, Mann M. Nature. 2003;422:198–207. - PubMed
-
- Mason EA, McDaniel EW. Transport Properties of Ions in Gases. Wiley; New York: 1988.
-
- Eiceman GA, Karpas Z. Ion Mobility Spectrometry. CRC Press; Boca Raton, FL: 2005.
-
- Shvartsburg AA. Differential Ion Mobility Spectrometry. CRC Press; Boca Raton, FL: 2008.
-
- Ruotolo BT, Giles K, Campuzano I, Sandercock AM, Bateman RH, Robinson CV. Science. 2005;310:1658–1661. - PubMed
Publication types
MeSH terms
Substances
Grants and funding
LinkOut - more resources
Full Text Sources
Other Literature Sources