Hilger Ryan T, Santini Robert E, McLuckey Scott A
Department of Chemistry, Purdue University , West Lafayette, Indiana 47907-2084, United States.
Anal Chem. 2014 Sep 2;86(17):8822-8. doi: 10.1021/ac502143p. Epub 2014 Aug 21.
A variety of ion traps are used in mass spectrometry. A key feature shared by most of them is the ability to perform tandem mass spectrometry (MS/MS). The Orbitrap is perhaps the most notable ion trap in which MS/MS has yet to be performed. An electrostatic linear ion trap (ELIT) is analogous to an orbitrap in that ions are trapped using solely electrostatic fields. However, the relatively simple ion motion within an ELIT facilitates analysis of fragment ions produced within the device. In this report, we describe an ELIT to which we have added a target for surface induced dissociation (SID). When combined with our previously described method for isolating a precursor ion trapped in an ELIT,1 this apparatus enables MS/MS to be performed. Measurement of product ion m/z is facilitated by the fact that the ELIT is isochronous over the energy range of 1850-2000 eV so that changes to ion energy during SID do not cause major m/z shifts. We demonstrate MS/MS by isolating and dissociating each compound in a four component mixture of tetraalkylphosphonium cations. We also discuss the optimization of collision energy and the length of time that the SID target is available for collision, two parameters that are important in the performance of these experiments.
多种离子阱被用于质谱分析。它们大多数共有的一个关键特性是能够进行串联质谱分析(MS/MS)。轨道阱可能是最著名的尚未进行MS/MS分析的离子阱。静电线性离子阱(ELIT)与轨道阱类似,即离子仅通过静电场进行捕获。然而,ELIT内相对简单的离子运动便于对该装置内产生的碎片离子进行分析。在本报告中,我们描述了一种添加了表面诱导解离(SID)靶标的ELIT。当与我们之前描述的用于分离捕获在ELIT中的前体离子的方法相结合时,1该装置能够进行MS/MS分析。ELIT在1850 - 2000 eV的能量范围内是等时的,这一事实便于对产物离子的m/z进行测量,因此在SID过程中离子能量的变化不会导致m/z发生重大偏移。我们通过分离和解离四烷基鏻阳离子四组分混合物中的每种化合物来演示MS/MS。我们还讨论了碰撞能量的优化以及SID靶标可用于碰撞的时间长度,这两个参数在这些实验的性能中很重要。