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具有附加八极场的线性四极离子阱中的离子激发。

Ion excitation in a linear quadrupole ion trap with an added octopole field.

作者信息

Michaud A L, Frank A J, Ding C, Zhao XianZhen, Douglas D J

机构信息

Department of Chemistry, University of British Columbia, 2036 Main Mall, Vancouver, British Columbia V6T 1Z1, Canada.

出版信息

J Am Soc Mass Spectrom. 2005 Jun;16(6):835-49. doi: 10.1016/j.jasms.2005.02.006. Epub 2005 Mar 24.

Abstract

Modeling of ion motion and experimental investigations of ion excitation in a linear quadrupole trap with a 4% added octopole field are described. The results are compared with those obtained with a conventional round rod set. Motion in the effective potential of the rod set can explain many of the observed phenomena. The frequencies of ion oscillation in the x and y directions shift with amplitude in opposite directions as the amplitudes of oscillation increase. Excitation profiles for ion fragmentation become asymmetric and in some cases show bistable behavior where the amplitude of oscillation suddenly jumps between high and low values with very small changes in excitation frequency. Experiments show these effects. Ions are injected into a linear trap, stored, isolated, excited for MS/MS, and then mass analyzed in a time-of-flight mass analyzer. Frequency shifts between the x and y motions are observed, and in some cases asymmetric excitation profiles and bistable behavior are observed. Higher MS/MS efficiencies are expected when an octopole field is added. MS/MS efficiencies (N(2) collision gas) have been measured for a conventional quadrupole rod set and a linear ion trap with a 4% added octopole field. Efficiencies are chemical compound dependent, but when an octopole field is added, efficiencies can be substantially higher than with a conventional rod set, particularly at pressures of 1.4 x 10(-4) torr or less.

摘要

描述了在添加4%八极场的线性四极阱中离子运动的建模以及离子激发的实验研究。将结果与使用传统圆形杆组获得的结果进行了比较。杆组有效势中的运动可以解释许多观察到的现象。随着振荡幅度的增加,离子在x和y方向上的振荡频率沿相反方向移动。离子碎裂的激发谱变得不对称,在某些情况下表现出双稳态行为,即振荡幅度在激发频率变化非常小时在高值和低值之间突然跳跃。实验显示了这些效应。离子被注入线性阱中,进行存储、隔离、激发以进行串联质谱分析,然后在飞行时间质谱分析仪中进行质量分析。观察到x和y运动之间的频率偏移,并且在某些情况下观察到不对称激发谱和双稳态行为。当添加八极场时,预计串联质谱效率会更高。已测量了传统四极杆组和添加4%八极场的线性离子阱的串联质谱效率(N₂碰撞气体)。效率取决于化合物,但当添加八极场时,效率可能会比传统杆组高得多,特别是在压力为1.4×10⁻⁴托或更低时。

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