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A Conjoined Rectilinear Collision Cell and Pulsed Extraction Ion Trap with Auxiliary DC Electrodes.
Stewart, Hamish; Grinfeld, Dmitry; Wagner, Alexander; Kholomeev, Alexander; Biel, Matthias; Giannakopulos, Anastassios; Makarov, Alexander; Hock, Christian.
Affiliation
  • Stewart H; Thermo Fisher Scientific, 11 Hannah-Kunath Str., 28199 Bremen, Germany.
  • Grinfeld D; Thermo Fisher Scientific, 11 Hannah-Kunath Str., 28199 Bremen, Germany.
  • Wagner A; Thermo Fisher Scientific, 11 Hannah-Kunath Str., 28199 Bremen, Germany.
  • Kholomeev A; Thermo Fisher Scientific, 11 Hannah-Kunath Str., 28199 Bremen, Germany.
  • Biel M; Thermo Fisher Scientific, 11 Hannah-Kunath Str., 28199 Bremen, Germany.
  • Giannakopulos A; Thermo Fisher Scientific, 11 Hannah-Kunath Str., 28199 Bremen, Germany.
  • Makarov A; Thermo Fisher Scientific, 11 Hannah-Kunath Str., 28199 Bremen, Germany.
  • Hock C; Thermo Fisher Scientific, 11 Hannah-Kunath Str., 28199 Bremen, Germany.
J Am Soc Mass Spectrom ; 35(1): 74-81, 2024 Jan 03.
Article in En | MEDLINE | ID: mdl-37925680
Ion traps are routinely directly coupled to mass analyzers, where they serve to suitably cool and shape an ion population prior to pulsed extraction into the analyzer proper. Such devices benefit from high duty cycle and transmission but suffer slow ion processing times caused by a compromise in the buffer gas pressure range that suitably dampens the ion kinetic energy without causing excessive scatter during extraction or within the analyzer. A rectilinear RF quadrupole ion trap has been characterized, conjoining a pressurized collision region with a pumped extraction region, and an unbroken RF interface for seamless ion transfer between them. Auxiliary electrodes mounted between the RF electrodes provide DC voltage gradients that serve to both guide ions through the device and position them at the extraction slot. The influence of the auxiliary DC upon the trapping RF field was measured, and suitable parameters were defined. A mode of operation was developed that allowed parallel processing of ions in both regions, enabling a repetition rate of 200 Hz when the device was coupled to a high-resolution accurate-mass analyzer.

Full text: 1 Collection: 01-internacional Database: MEDLINE Language: En Journal: J Am Soc Mass Spectrom Year: 2024 Document type: Article Affiliation country: Germany Country of publication: United States

Full text: 1 Collection: 01-internacional Database: MEDLINE Language: En Journal: J Am Soc Mass Spectrom Year: 2024 Document type: Article Affiliation country: Germany Country of publication: United States