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具有特殊形状电极的动态谐和 FT-ICR 池,用于补偿磁场的非均匀性。电场和离子运动动力学的计算机模拟。

Dynamically harmonized FT-ICR cell with specially shaped electrodes for compensation of inhomogeneity of the magnetic field. Computer simulations of the electric field and ion motion dynamics.

机构信息

Institute for Energy Problems of Chemical Physics, Russian Academy of Sciences, Moscow, Russia.

出版信息

J Am Soc Mass Spectrom. 2012 Dec;23(12):2198-207. doi: 10.1007/s13361-012-0480-1. Epub 2012 Sep 20.

Abstract

The recently introduced ion trap for FT-ICR mass spectrometers with dynamic harmonization showed the highest resolving power ever achieved both for ions with moderate masses 500-1000 Da (peptides) as well as ions with very high masses of up to 200 kDa (proteins). Such results were obtained for superconducting magnets of very high homogeneity of the magnetic field. For magnets with lower homogeneity, the time of transient duration would be smaller. In superconducting magnets used in FT-ICR mass spectrometry the inhomogeneity of the magnetic field in its axial direction prevails over the inhomogeneity in other directions and should be considered as the main factor influencing the synchronic motion of the ion cloud. The inhomogeneity leads to a dependence of the cyclotron frequency from the amplitude of axial oscillation in the potential well of the ion trap. As a consequence, ions in an ion cloud become dephased, which leads to signal attenuation and decrease in the resolving power. Ion cyclotron frequency is also affected by the radial component of the electric field. Hence, by appropriately adjusting the electric field one can compensate the inhomogeneity of the magnetic field and align the cyclotron frequency in the whole range of amplitudes of z-oscillations. A method of magnetic field inhomogeneity compensation in a dynamically harmonized FT-ICR cell is presented, based on adding of extra electrodes into the cell shaped in such a way that the averaged electric field created by these electrodes produces a counter force to the forces caused by the inhomogeneous magnetic field.

摘要

最近推出的用于傅里叶变换离子回旋共振质谱仪的离子阱具有动态调谐功能,它实现了迄今为止最高的分辨率,无论是中等质量(500-1000 Da)的离子(如肽)还是非常高质量(高达 200 kDa)的离子(如蛋白质)都能达到这一效果。这些结果是在磁场具有非常高均匀度的超导磁体上获得的。对于磁场均匀度较低的磁体,瞬态持续时间会更短。在用于傅里叶变换离子回旋共振质谱的超导磁体中,磁场的轴向不均匀性超过了其他方向的不均匀性,应被视为影响离子云同步运动的主要因素。这种不均匀性导致了回旋频率取决于离子阱中轴向振荡的幅度。因此,离子云中的离子会失相,导致信号衰减和分辨率降低。离子回旋频率也受到电场径向分量的影响。因此,通过适当调整电场,可以补偿磁场的不均匀性,并在整个 z 振荡幅度范围内对准回旋频率。本文提出了一种在动态调谐 FT-ICR 单元中补偿磁场不均匀性的方法,该方法基于在单元中添加额外的电极,使得这些电极产生的平均电场产生与由不均匀磁场引起的力相反的力。

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