Rf surfaces and rf ion guides

H - Electricity – 01 – J

Patent

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Details

H01J 49/42 (2006.01)

Patent

CA 2567466

Apparatus and methods are provided for trapping, manipulation and transferring ions along RF and DC potential surfaces and through RF ion guides. Potential wells are formed neap RF-field generating surfaces due to the overlap of the radio-frequency (RF) fields and electrostatic fields created by static potentials applied to surrounding electrodes. Ions can be constrained and accumulated overtime in such wells. During confinement, ions may be subjected to various processes, such as accumulation, fragmentation, collisional cooling, focusing, mass-to-charge filtering, spatial separation ion mobility and chemical interactions, leading to improved performance in subsequent processing and analysis steps, such as mass analysis. Alternatively, the motion of ions may be better manipulated during confinement to improve the efficiency of their transport to specific locations, such as an entrance aperture into vacuum from atmospheric pressure or into a subsequent vacuum stage.

Il est prévu des appareils et des procédés pour piéger, manipuler et transférer des ions le long de surfaces de potentiel RF et CC et par le biais de guides d~ions RF. Des puits de potentiel sont formés près de surfaces générant un champ RF par chevauchement des champs de fréquence radio (RF) et des champs électrostatiques créés par des potentiels statiques appliqués aux électrodes environnantes. Les ions peuvent être contenus et accumulés dans le temps dans de tels puits. Pendant le confinement, les ions peuvent être soumis à divers processus, comme l~accumulation, la fragmentation, le refroidissement par collision, la focalisation, le filtrage entre masse et charge, la mobilité spatiale des ions de séparation et les interactions chimiques, conduisant à des performances améliorées lors du traitement et des phases d~analyse subséquents, comme une analyse de masse. Autre possibilité, le mouvement d~ions peut être mieux géré pendant le confinement pour augmenter l~efficacité de leur transport vers des endroits spécifiques, comme une ouverture d~entrée dans le vide à partir de la pression atmosphérique ou dans un étage de vide subséquent.

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