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在四极离子阱中共振激发过程中,共振逐出和离子解离之间的竞争。

Competition between resonance ejection and ion dissociation during resonant excitation in a quadrupole ion trap.

机构信息

Department of Environmental Sciences and Engineering, University of North Carolina at Chapel HilI, 27599-7400, Chapel Hilt, NC, USA.

出版信息

J Am Soc Mass Spectrom. 1994 Dec;5(12):1031-41. doi: 10.1016/1044-0305(94)85065-8.

Abstract

The competition between ion dissociation and ion ejection during resonant excitation in a quadrupole ion trap is investigated. Ions of similar mass but with a range of critical energies for the onset of dissociation have been examined. The effects of the amplitude and duration of the resonant excitation, the well depth in which the ions are trapped, and the pressure and nature of the collision gas are explored. Once the onset of ion ejection is reached, the rate of ion ejection increases with increased amplitude of the resonant excitation signal. The rate of ejection decreases or stays constant as a function of the duration of the resonant excitation, depending upon the ion species being excited. Increasing the trapping well depth increases the relative amount of dissociation versus ejection as does increasing the pressure of the bath gas. Adding heavier bath gases lowers the onset of ion dissociation and raises the onset of ion ejection.

摘要

在四极离子阱中共振激发过程中,离子离解和离子抛出之间的竞争关系得到了研究。研究了具有相似质量但具有不同离解起始临界能量的离子。考察了共振激发的幅度和持续时间、离子被捕获的阱深,以及碰撞气体的压力和性质的影响。一旦达到离子抛出的起始点,随着共振激发信号幅度的增加,离子抛出的速度也会增加。随着共振激发持续时间的增加,离子抛出的速度会减少或保持不变,这取决于被激发的离子种类。增加阱深会增加离解相对于抛出的相对量,而增加浴气压力也会增加离解相对于抛出的相对量。添加较重的浴气会降低离子离解的起始点并提高离子抛出的起始点。

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