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Design and Implementation of a New Electrodynamic Ion Funnel

机译:新型电动离子漏斗的设计与实现

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A new electrodynamic (rf) ion funnel has been developed and evaluated for use in the interface regions (at ~1-10 Torr) of atmospheric pressure ion sources (e.g., electrospray ionization (ESI) for mass spectrometry). The ion funnel consists of a ring electrode ion guide with decreasing i.d. and with a superimposed dc potential gradient along the ring stack. The thicknesses of the ring electrodes and the spacings between them were reduced to 0.5 mm from 1.59 mm compared to those used for previous designs. The new ion funnel displays a significant improvement in low-mass transmission (m/z>200) and sensitivity compared to previous designs. The transmission efficiencies for electrosprayed peptides and proteins (ranging in mass from 200 to 17 000 Da) were typically 50-60% of total incoming currents from a heated capillary inlet. The transmitted ion currents were a factor of 30-56 greater than those of the standard interface for peptide samples and a factor of 18-22 greater than those for protein samples. The sensitivity gains realized at the MS detector were somewhat lower, possibly due to space charge effects in the octapole ion beam guide following the ion funnel. The improved ion transmission properties result primarily from the use of reduced spacings between ring electrodes. We also show that the ion funnel can be operated in two different modes, one using low-rf-amplitude scans, allowing fragile noncovalent complexes (as well as generally undesired adducts) to be transmitted, and the other using high-rf-amplitude scans, providing greater collisional activation and more effective adduct removal (or the dissociation of lower m/z species).
机译:已开发出一种新的电动(rf)离子漏斗并对其进行了评估,以用于大气压离子源的界面区域(约1-10 Torr)(例如用于质谱分析的电喷雾电离(ESI))。离子漏斗由内径减小的环形电极离子导向器组成。并沿着叠环堆叠了直流电势梯度。与以前的设计相比,环形电极的厚度和它们之间的间距从1.59 mm减小到0.5 mm。与以前的设计相比,新的离子漏斗在低质量传输(m / z> 200)和灵敏度方面显示出显着改善。电喷雾肽和蛋白质(质量范围从200到17000 Da)的传输效率通常是从加热的毛细管入口进入总电流的50-60%。传输的离子电流比肽样品的标准界面大30-56倍,比蛋白质样品的标准离子大18-22倍。 MS检测器上获得的灵敏度增益要低一些,这可能是由于离子漏斗后面的八极离子束导管中存在空间电荷效应。改善的离子传输性能主要是由于使用环形电极之间的间距减小。我们还表明,离子漏斗可以两种不同的模式操作,一种使用低rf幅值扫描,可以传输易碎的非共价络合物(以及通常不希望的加合物),另一种使用高rf幅值扫描,可提供更大的碰撞活化和更有效的加合物去除(或较低的m / z物种解离)。

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