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首页> 外文期刊>Journal of the American Society for Mass Spectrometry >Simulation of Unidirectional Ion Ejection in an Asymmetric Half-Round Rod Electrode Linear Ion Trap Mass Analyzer
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Simulation of Unidirectional Ion Ejection in an Asymmetric Half-Round Rod Electrode Linear Ion Trap Mass Analyzer

机译:非对称半圆杆电极线性离子阱质量分析仪中单向离子喷射的仿真

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摘要

An asymmetric trapping field was generated from an asymmetric half-round rod electrode linear ion trap (A-HreLIT), and its performance of unidirectional ion ejection was studied. Two different asymmetric structures of A-HreLITs were constructed, one rotating y electrode pairs toward an x electrode with an angle θ , and the other stretching one x electrode with a distance α . The center of trapping field was displaced away from the geometrical center of the ion trap, defined to be the midpoint along the axis of y between x electrodes, which leads to unidirectional ion ejection through one x electrode. Computer simulations were used to investigate the relationship between asymmetric geometric parameter of θ (or α ) and analytical performance. Both structures could result in similar asymmetric trapping fields, which mainly composed of dipole, quadrupole, and hexapole fields. The dipole and hexapole fields were approximately proportional to the asymmetric geometric parameter of rotation angle θ (or stretch distance α ). In simulation, ion trajectories and ion kinetic energy were calculated. For ions with m/z 609?Th, the simulation results showed that mass resolution of over 2400 (FWHM) and ion unidirectional ejection efficiency of nearly 90% were achieved in an optimized A-HreLIT. Ion detection efficiency of A-HreLIT could be improved significantly with only one ion detector, while maintaining a considerable mass resolution. Furthermore, the A-HreLIT could be driven by a traditional balanced RF power supply. These advantages make A-HreLIT suitable for developing miniaturized mass spectrometer with high performance. Graphical Abstract ?.
机译:从非对称半圆杆电极线性离子阱(A-HRELIT)产生不对称俘获场,研究了单向离子喷射的性能。构造了两种不同的A-HELITS的不同不对称结构,朝向具有角度θ的X电极的一个旋转Y电极对,以及具有距离α的另一个拉伸一个X电极。捕获场中心远离离子阱的几何中心,定义为沿X电极之间的Y轴的中点,这导致通过一个X电极的单向离子喷射。使用计算机模拟来研究θ(或α)和分析性能的不对称几何参数之间的关系。这两个结构都可能导致相似的不对称捕获场,主要由偶极子,四极杆和六峰块字段组成。偶极子和六氧基面条与旋转角度θ(或拉伸距离α)的不对称几何参数大致成比例。在模拟中,计算离子轨迹和离子动能。对于具有M / Z 609的离子,模拟结果表明,在优化的A-Hrelit中实现了超过2400(fwhm)和离子单向喷射效率的质量分辨率和近90%的离子单向喷射效率。只有一个离子检测器可以显着改善A-Hrelit的离子检测效率,同时保持相当大的质量分辨率。此外,A-HELIT可以由传统的平衡RF电源驱动。这些优点使A-HREL适用于开发具有高性能的小型化质谱仪。图形概要 ?。

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