波形
离子阱
化学
离子
四极离子阱
质谱法
振幅
激发
分析化学(期刊)
原子物理学
光学
物理
电压
有机化学
色谱法
量子力学
作者
Xinyue Ding,Quan Yu,Xinqiong Lu,Xiaohao Wang,Xinming Huo,Xiang Qian
标识
DOI:10.1021/acs.analchem.2c04225
摘要
To figure out the reason for the drawback of the stored waveform inverse Fourier transform (SWIFT) waveform and realize the high-resolution ion isolation on the miniaturized linear ion trap mass spectrometer, we studied the efficiency that ions can be excited under different excitation durations and amplitudes at different frequencies and compared the overlap ratios of the effective excitation frequency bandwidths of the adjacent ions. According to this, we proposed a new coarse-to-fine isolation waveform named SWIFTSIN. By superposing one or more sinusoidal waveforms on the SWIFT waveform and modulating the phases of the superposed sinusoidal waveforms, the generated SWIFTSIN waveform can achieve unit mass isolation on the miniaturized linear ion trap mass spectrometer without reducing the intensity of the target ion. The isolation ability of the SWIFTSIN waveform was verified by isolating a single isotope peak in the mixed samples.
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