EP1533830A2

Multipole ion guide for mass spectrometry

Abstract

An apparatus for analyzing chemical species, comprising: (a) an ion source for producing ions from a sample substance; (b) a vacuum region, said vacuum region comprising at least two vacuum stages (183, 184, 185, 186), each of said vacuum stages (183, 184, 185, 186) having means for pumping away gas to produce a partial vacuum, said vacuum stages (183, 184, 185, 186) being in communication with each other such that said ions can move through a sequence of said vacuum stages (183, 184, 185, 186); (c) a Time-of-Flight mass analyzer (192) having a detector, said Time-of-Flight mass analyzer (192) being located in at least one (186) of said vacuum stages (183, 184, 185, 186); (d) at least one multipole ion guide (180, 181) located in said vacuum region; and (e) means for applying electrical voltages to said at least one multipole ion guide; characterized in that: said Time-of-Flight mass analyzer (192) comprises a pulsing region (191).

EP1533830A2, drawing sheet 1
Sheet 1 of 16

Term

Term ended

Projected expiry passed 27 February 2015, 11.6 years ago.

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40 claims: 6 independent, 34 dependent

  1. 1
    An apparatus for analyzing chemical species, comprising:(a) an ion source for producing ions from a sample substance;(b) a vacuum region, said vacuum region comprising at least two vacuum stages (183, 184, 185, 186), each of said vacuum stages (183, 184, 185, 186) having means for pumping away gas to produce a partial vacuum, said vacuum stages (183, 184, 185, 186) being in communication with each other such that said ions can move through a sequence of said vacuum stages (183, 184, 185, 186);(c) a Time-of-Flight mass analyzer (192) having a detector, said Time-of-Flight mass analyzer (192) being located in at least one (186) of said vacuum stages (183, 184, 185, 186);(d) at least one multipole ion guide (180, 181) located in said vacuum region;and (e) means for applying electrical voltages to said at least one multipole ion guide;characterized in that : said Time-of-Flight mass analyzer (192) comprises a pulsing region (191).
  2. 7
    An apparatus according to claims 1, 2 or 3, wherein said ion source produces ions from solution and delivers said ions into said vacuum region through an orifice.
  3. 14
    An apparatus according to claims 10 or 11, wherein said AC and DC voltages are adjusted to increase the duty cycle of said Time-of-Flight mass analyzer (192).
  4. 27
    A method of analyzing chemical species, comprising:(a) utilizing an ion source, a vacuum region with at least two vacuum stages (183, 184, 185, 186), at least one multipole ion guide (180, 181) which is located in said vacuum region, and a Time-of-Flight mass analyzer (192) having a time-of-flight tube and a detector, said Time-of-Flight mass analyzer (192) located in at least one of said vacuum stages (183, 184, 185, 186);(b) producing ions from a sample introduced into said ion source;(c) directing said ions into said at least one multipole ion guide (180, 181), said at least one multipole ion guide (180, 181) having electrical voltages applied thereto;(d) transferring said ions through said at least one multipole ion guide (180, 181);(e) transferring said ions from the exit of said at least one multipole ion guide (181) into said Time-of-Flight mass analyzer (192);and, (f) detecting said ions with said detector;characterized in that : said Time-of-Flight mass analyzer (192) further comprises a pulsing region (191), and the step of transferring said ions from the exit of said at least one multipole ion guide (181) into said Time-of-Flight mass analyzer (192) comprises transferring said ions from the exit of said at least one multipole ion guide (181) into said pulsing region (191), said method further comprising the step of applying pulsing voltages to the lens elements in said pulsing region (191) to accelerate said ions into said time-of-flight tube.
  5. 39
    An apparatus used for analyzing chemical species comprising:(a) an ion source operated at or near atmospheric pressure which produces gaseous ions from analyte in solution and delivers said ions into a first vacuum pumping stage through an orifice;(b) two or more vacuum pumping stages with means for pumping away gas in each vacuum stage;(c) a Time-of-Flight mass analyzer and detector with its ion pulsing region and Time-of-Flight tube located in one or more of said vacuum pumping stages;(d) a multipole ion guide which begins in one of the first three of said vacuum pumping stages;said multipole ion guide consisting of a multiple of equally spaced parallel poles extending the length of said ion guide. Said multipole ion guide is positioned in said vacuum pumping stage or stages upstream of the said Time-of-Flight mass analyzer and transmits ions which are delivered from said ion source through a portion of said vacuum stages;(e) a means for applying AC and DC voltages to the poles of said multipole ion guide;(f) a means for controlling the AC frequency and said AC and DC voltages which are applied to said poles of said multipole ion guide.
  6. 40
    A method for analyzing chemical species whereby:(a) an ion source operated at or near atmospheric pressure which produces gaseous ions from analyte in solution and delivers said ions into a first vacuum pumping stage through an orifice;(b) vacuum pumping is applied to two or more vacuum pumping stages such that each successive vacuum pumping stage has a lower background pressure than the previous pumping stage;(c) a Time-of-Flight mass analyzer and detector with its primary ion beam pulsing region and Time-of-Flight tube located in one or more of the vacuum pumping stages is used for mass analysis of said chemical species;(d) a multipole ion guide which begins in one of the first three of said vacuum pumping stages. Said multipole ion guide consisting of a multiple of equally spaced parallel poles extending the length of said ion guide. Said multipole ion guide is positioned in said vacuum pumping stage or stages upstream of the said Time-of-Flight mass analyzer and transmits ions which are delivered from said ion source through a portion of said vacuum stages;(e) the method of controlling the AC frequency and AC and DC voltages which are applied to the poles of said multipole ion guide.