Department of Chemistry, University of California, Berkeley, California 94720-1460, United States.
Anal Chem. 2023 Jul 4;95(26):10077-10086. doi: 10.1021/acs.analchem.3c01520. Epub 2023 Jun 21.
Ion-ion interactions in charge detection mass spectrometers that use electrostatic traps to measure masses of individual ions have not been reported previously, although ion trajectory simulations have shown that these types of interactions affect ion energies and thereby degrade measurement performance. Here, examples of interactions between simultaneously trapped ions that have masses ranging from ca. 2 to 350 MDa and ca. 100 to 1000 charges are studied in detail using a dynamic measurement method that makes it possible to track the evolution of the mass, charge, and energy of individual ions over their trapping lifetimes. Signals from ions that have similar oscillation frequencies can have overlapping spectral leakage artifacts that result in slightly increased uncertainties in the mass determination, but these effects can be mitigated by the careful choice of parameters used in the short-time Fourier transform analysis. Energy transfers between physically interacting ions are also observed and quantified with individual ion energy measurement resolution as high as ∼950. The mass and charge of interacting ions do not change, and their corresponding measurement uncertainties are equivalent to ions that do not undergo physical interactions. Simultaneous trapping of multiple ions in CDMS can greatly decrease the acquisition time necessary to accumulate a statistically meaningful number of individual ion measurements. These results demonstrate that while ion-ion interactions can occur when multiple ions are trapped, they have negligible effects on mass accuracy when using the dynamic measurement method.
使用静电阱测量单个离子质量的荷质比检测质谱仪中,离子-离子相互作用此前尚未有报道,尽管离子轨迹模拟表明这些类型的相互作用会影响离子能量,从而降低测量性能。在这里,使用一种动态测量方法详细研究了同时被捕获的质量范围约为 2 至 350 MDa 和电荷范围约为 100 至 1000 的离子之间的相互作用,该方法可以跟踪单个离子的质量、电荷和能量在其捕获寿命内的演化。具有相似振荡频率的离子的信号可能会产生重叠的频谱泄漏伪影,从而导致质量确定的不确定性略有增加,但通过仔细选择短时间傅里叶变换分析中使用的参数,可以减轻这些影响。还可以以高达约 950 的单个离子能量测量分辨率来观察和量化物理相互作用离子之间的能量转移。相互作用离子的质量和电荷不会改变,其对应的测量不确定性等同于未发生物理相互作用的离子。在 CDMS 中同时捕获多个离子可以大大减少累积具有统计学意义的单个离子测量数量所需的采集时间。这些结果表明,当多个离子被捕获时可能会发生离子-离子相互作用,但在使用动态测量方法时,对质量精度的影响可以忽略不计。