Suppr超能文献

从线性四极杆离子阱进行质量选择性轴向离子喷射。

Mass selective axial ion ejection from a linear quadrupole ion trap.

作者信息

Londry F A, Hager James W

机构信息

MDS SCIEX, 71 Four Valley Drive, Concord, Ontario L4K 4V8, Canada.

出版信息

J Am Soc Mass Spectrom. 2003 Oct;14(10):1130-47. doi: 10.1016/S1044-0305(03)00446-X.

Abstract

The electric fields responsible for mass-selective axial ejection (MSAE) of ions trapped in a linear quadrupole ion trap have been studied using a combination of analytic theory and computer modeling. Axial ejection occurs as a consequence of the trapped ions' radial motion, which is characterized by extrema that are phase-synchronous with the local RF potential. As a result, the net axial electric field experienced by ions in the fringe region, over one RF cycle, is positive. This axial field depends strongly on both the axial and radial ion coordinates. The superposition of a repulsive potential applied to an exit lens with the diminishing quadrupole potential in the fringing region near the end of a quadrupole rod array can give rise to an approximately conical surface on which the net axial force experienced by an ion, averaged over one RF cycle, is zero. This conical surface has been named the cone of reflection because it divides the regions of ion reflection and ion ejection. Once an ion penetrates this surface, it feels a strong net positive axial force and is accelerated toward the exit lens. As a consequence of the strong dependence of the axial field on radial displacement, trapped thermalized ions can be ejected axially from a linear ion trap in a mass-selective way when their radial amplitude is increased through a resonant response to an auxiliary signal.

摘要

利用解析理论和计算机建模相结合的方法,对负责从线性四极离子阱中捕获的离子进行质量选择性轴向喷射(MSAE)的电场进行了研究。轴向喷射是捕获离子径向运动的结果,其特征是极值与局部射频电势相位同步。因此,在一个射频周期内,离子在边缘区域所经历的净轴向电场为正。该轴向场强烈依赖于轴向和径向离子坐标。将施加到出口透镜的排斥势与四极杆阵列末端附近边缘区域中逐渐减小的四极势叠加,可产生一个近似锥形表面,在该表面上,离子在一个射频周期内所经历的净轴向力平均为零。这个锥形表面被称为反射锥,因为它划分了离子反射和离子喷射区域。一旦离子穿透该表面,它就会感受到强烈的净正轴向力,并被加速朝向出口透镜。由于轴向场对径向位移的强烈依赖性,当捕获的热化离子通过对辅助信号的共振响应增加其径向振幅时,它们可以以质量选择性的方式从线性离子阱轴向喷射出去。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验