Nova Patents
EP1933366B1

Apparatus for mass analysis of ions

Abstract

This record has no abstract on file.

EP1933366B1, drawing sheet 1
Sheet 1 of 7

Term

1.2 yearsleft in the term

Expires 28 November 2027.

  1. Priority
  2. Filed
  3. Granted
  4. Today
  5. Expires

18 claims: 11 independent, 7 dependent

  1. 1
    An apparatus for mass analysis of ions comprising:a) an ion source (10);b) a time-of-flight mass spectrometer (40) for analysis of ions transmitted from the ion source (10);c) a filter (20) for segmenting incoming ions according to their m/q ratio into a first group of ions and into a second group of ions, whereas the filter (20) is coupled to the ion source (10) and whereas the filter (20) and the time-of-flight mass spectrometer are arranged in such a way that the ions of the first group are transmitted to the mass spectrometer (40) and that the ions of the second group are not transmitted to the mass spectrometer (40);wherein d) the filter (20) is designed in such a way that the second group consists of ions belonging to one or several narrow bands of m/q;e) the filter (20) comprises a field generating device (21, 22, 30, 31.1...31.4) which is designed in such a way that it generates a primary confining field capable of transmitting ions towards the time-of-flight mass spectrometer as well as one or several RF fields superimposed with said primary field;characterized in that f) frequencies of the superimposed RF fields match oscillation frequencies of ions belonging to said one or several narrow bands of m/q such that these ions are resonantly excited and finally ejected from a confining area of the primary field;g) the ion source (10) is a high current ion source, in particular an ion source providing at least 5 million ions/s, preferably at least 50 million ions/s, at an output of the ion source;h) the ion source as well as the time-of-flight mass spectrometer are constituted and operated in such a way that a flux of ions generated by the ion source (10) causes saturation effects in the time-of-flight mass spectrometer (40) when the ion source (10) is directly coupled to the time-of-flight mass spectrometer (40);and in that i) the apparatus comprises a device (270) for cooling the ions to be inserted into the filter (20), the device (270) being designed in such a way that it generates a confining multipole field capable of transmitting ions towards the filter (20) and that it holds a gaseous atmosphere filling a confining region of the multipole field.
  2. 7
    The apparatus as recited in one of claims 1 to 6, characterized in that the field generating device further generates a coaxial linear field superimposed to the primary field in order to transport the incoming ions along an axis of said primary field.
  3. 8
    The apparatus as recited in one of claims 1 to 7, characterized in that the field generating device is designed in such a way that different superimposed RF frequencies may be alternately generated such that several narrow bands of m/q are scanned and ions belonging to these bands are resonantly excited and ejected from the confining area of the primary field.
  4. 9
    The apparatus as recited in one of claims 1 to 8, characterized in that the field generating device is designed in such a way that superimposed RF frequencies may be generated that are pulsed with a selectable pulse-width in order to selectively reduce an ion number of at least one of said narrow bands of m/q or in order to subsequently analyze different mass spectra by the time-of-flight mass spectrometer.
  5. 10
    The apparatus as recited in one of claims 1 to 9, characterized in that the field generating device is designed in such a way that RF fields may be generated that suppress the ions of the second group by a factor p I , where in particular 10 -4 < p I < 0.1.
  6. 11
    The apparatus as recited in one of claims 1 to 10, characterized in that the high current ion source is a selective ion source (110) for selectively ionizing particles to be analyzed and in that the selectively ionized particles are transmitted to the time-of-flight mass spectrometer (40).
  7. 12
    A method for mass analysis of ions using an ion source as well as a time-of-flight mass spectrometer, comprising the steps of:a) segmenting incoming ions according to their m/q ratio into a first group of ions and into a second group of ions;b) transmitting the ions of the first group to the time-of-flight mass spectrometer and discarding the ions of the second group;wherein c) the incoming ions are segmented in such a way that the second group of ions consists of ions belonging to one or several narrow bands of m/q;and d) for segmenting the incoming ions they are injected into a primary confining field capable of transmitting ions towards the time-of-flight mass spectrometer and being superimposed by one or several RF frequencies, characterized in that the ion source as well as the time-of-flight mass spectrometer are constituted and operated in such a way that a flux of ions generated by the ion source would cause saturation effects in the time-of-flight mass spectrometer if the ion source were directly coupled to the time-of-flight mass spectrometer;in that the superimposed RF frequencies are chosen in such a way as to match oscillation frequencies of ions belonging to said one or several narrow bands of m/q such that these ions are resonantly excited and finally ejected from a confining area of the primary field;and in that the ions are cooled before the segmenting step by injecting the ions into a gaseous atmosphere, and simultaneously subjecting the ions to a confining multipole field capable of transmitting ions towards the filter.
  8. 15
    The method as recited in one of claims 12 to 14, characterized in that superimposed RF frequencies are generated that are pulsed with a selectable pulse-width in order to selectively reduce an ion number of at least one of said narrow bands of m/q or in order to subsequently analyze different mass spectra by the time-of-flight mass spectrometer.
  9. 16
    A method for mass analysis of particles, comprising the step of selectively ionizing particles to be analyzed as well as the method as recited in one of claims 12 to 15 for mass analysis of the selectively ionized particles.
  10. 17
    The method as recited in one of claims 12 to 16, characterized in that the ions are stored in a confining multipole field, and the RF ejection frequencies are applied during part or a total of a storage time of the ions.
  11. 18
    The method as recited in one of claims 12 to 17, characterized in that the segmentation of the incoming ions is effected in such a way that the ions of the second group are suppressed by a factor p I , where in particular 10 -5 < p I < 0.1, and where the method includes a calibration step, during which the factor p I is evaluated in order to analyze quantitatively a yield of ions in the second group.