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Transmission mode Ion/Ion electron-transfer dissociation in a linear ion trap

机译:线性离子阱中的传输模式离子/离子电子转移解离

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Two related methods for effecting electron-transfer dissociation (ETD) are described that involve either the storage of analyte cations in a linear ion trap while reagent anions are transmitted through the cations or storage of the reagent anions with transmission of the analyte cations. In the former approach, the ETD products are captured and stored in the linear ion trap for subsequent mass analysis. In the latter approach, the ETD products pass through the linear ion trap and must be collected or directly mass-analyzed by an external device. In the present study, another linear ion trap is placed in series with the ion trap where the ion/ion reaction was employed. A pulsed dual ion source approach coupled with a hybrid triple quadrupole/linear ion trap instrument was used to illustrate these methods. The two approaches give similar results in terms of the identities and relative abundances of the ETD products. Under optimum conditions, the two approaches also give comparable extents of ion/ion reactions for the same reaction time. Also, conversions of precursor ions to product ions over the same reaction time are similar to those noted for experiments in which ions of both polarities are stored simultaneously. These approaches, therefore, provide expanded experimental options for the use of ETD. An advantage of transmission mode experiments that they hold over mutual storage mode experiments is that they do not require that any specialized measures be taken to enable the simultaneous storage of oppositely charged ions.
机译:描述了两种实现电子转移解离(ETD)的相关方法,其中涉及将分析物阳离子存储在线性离子阱中,同时将试剂阴离子通过阳离子传输,或将试剂阴离子存储在分析物阳离子中。在前一种方法中,ETD产物被捕获并存储在线性离子阱中,以用于后续质量分析。在后一种方法中,ETD产品通过线性离子阱,必须通过外部设备收集或直接进行质量分析。在本研究中,另一个线性离子阱与采用离子/离子反应的离子阱串联放置。脉冲双离子源方法与混合三重四极杆/线性离子阱仪器结合使用来说明这些方法。就ETD产品的标识和相对丰度而言,两种方法给出的结果相似。在最佳条件下,对于相同的反应时间,这两种方法还可以提供相当程度的离子/离子反应。同样,在相同的反应时间内前体离子向产物离子的转化与实验中注意到的相似,在该实验中,两种极性的离子同时存储。因此,这些方法为ETD的使用提供了扩展的实验选择。与互存储模式实验相比,它们保留的传输模式实验的优势在于,它们无需采取任何专门措施即可同时存储带相反电荷的离子。

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