Previous masz spectrometers based on the ion cyclotron resonance principle have employed continuous excitation (smgle-pube or frequency-sweep), with detection during (frequency-sweep) or after (single-pulse or frequency smcep) the excitation. The present paper introduces an exper-knent in uhich an i
Circularly polarized quadrature excitation for Fourier-transform ion cyclotron resonance mass spectrometry
β Scribed by Shenheng Guan; Michael V. Gorshkov; Alan G. Marshall
- Publisher
- Elsevier Science
- Year
- 1992
- Tongue
- English
- Weight
- 468 KB
- Volume
- 198
- Category
- Article
- ISSN
- 0009-2614
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β¦ Synopsis
A quadrature method for producing circularly polarized excitation for selective detection of positive or negative ions has been proposed for Fourier-transform ion cyclotron resonance mass spectrometry. The new technique achieves the same post-excitation ion cyclotron orbital radius at half the excitation rf voltage of conventional linearly polarized (dipolar) excitation, and is especially useful for exciting and detecting dynamically trapped ions of one charge state in a mixture of simultaneously trapped positive and negative ions. Circularly polarized single-frequency resonant excitation is accomplished experimentally by simultaneous application ofa sinusoidal rf voltage to one pair of electrodes of a cubic ICR ion trap and a 90 Β° or 270 Β° phase-shifted voltage of the same frequency to a second orthogonal pair of electrodes, followed by conventional dipolar detection. Selective excitation of 35C1+ or ~sCI-ions from a dynamically trapped mixture of 35C1+ and 35C1-ions is demonstrated. Circularly polarized broadband excitation by use of frequency-sweep or stored-waveform (SWIFT) excitation is proposed and discussed.
π SIMILAR VOLUMES
Two-dimensional Fourier transform (2D FT) spectroscopy is applied to ion cyclotron resonance (ICR) to obtain direct evidence for mass transfer due to ion-molecule collisions. The 2D FI ICR experiment, which is closely analogous to 2D exchange NMR spectroscopy (NOESY), yields similar information to t
Broad-band frequency cscitation in Fourier transform mass spcctrometry (IT/MS) has previously been achieved via impulse or frequencyswecp time-domain waveforms. In this paper, WC introduce pseudo-random-noise esciration based on shift register maximal-length sequences. Esperimcntal FT/hlS specrra of
The ions produced by "'Cf plasma desorption are detected by Fourier transform ion cyclotron resonance techniques. Results for CsI and N,N,N-trimethyl-p-aminophenolate iodide show the feasibility of the technique with high resolution (up to 11 000 at m / z 23) and good signal-to-noise ratio (up to 72