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Enhancement of Ion Activation and Collision-Induced Dissociation by Simultaneous Dipolar Excitation of Ions in x- and y-Directions in a Linear Ion Trap

机译:通过线性离子阱中x和y方向上的离子同时偶极激发来增强离子活化和碰撞诱导的离解

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Collision-induced dissociation (CID) in linear ion traps is usually performed by applying a dipolar alternating current (AC) signal to one pair of electrodes, which results in ion excitation mainly in one direction. In this paper, we report simulation and experimental studies of the ion excitation in two coordinate directions by applying identical dipolar AC signals to two pairs of electrodes simultaneously. Theoretical analysis and simulation results demonstrate that the ion kinetic energy is higher than that using the conventional CID method. Experimental results show that more activation energy (as determined by the intensity ratio of the a(4)/b(4) fragments from the CID of protonated leucine enkephalin) can be deposited into parent ions in this method. The dissociation rate constant in this method was about 3.8 times higher than that in the conventional method under the same experimental condition, at the Mathieu parameter qu (where u = x, y) value of 0.25. The ion fragmentation efficiency is also significantly improved. Compared with the conventional method, the smaller qu value can be used in this method to obtain the same internal energy deposited into ions. Consequently, the low mass cut-off is redeemed and more fragment ions can be detected. This excitation method can be implemented easily without changing any experimental parameters.
机译:线性离子阱中的碰撞诱导解离(CID)通常是通过向一对电极施加偶极交流(AC)信号来执行的,这主要导致一个方向的离子激发。在本文中,我们报告了通过将相同的偶极交流信号同时应用于两对电极,在两个坐标方向上进行离子激发的模拟和实验研究。理论分析和仿真结果表明,离子动能高于传统的CID法。实验结果表明,在该方法中,更多的活化能(由质子化亮氨酸脑啡肽CID的a(4)/ b(4)片段的强度比确定)。在相同的实验条件下,在Mathieu参数qu(其中u = x,y)值为0.25的情况下,该方法的解离速率常数约为传统方法的3.8倍。离子裂解效率也大大提高。与常规方法相比,该方法中可以使用较小的qu值来获得沉积到离子中的相同内能。因此,可以赎回低质量截止值,并且可以检测到更多的碎片离子。无需更改任何实验参数即可轻松实现这种激励方法。

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