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首页> 外文期刊>Journal of the American Society for Mass Spectrometry >Reducing Space Charge Effects in a Linear Ion Trap by Rhombic Ion Excitation and Ejection
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Reducing Space Charge Effects in a Linear Ion Trap by Rhombic Ion Excitation and Ejection

机译:通过菱形离子激发和喷射降低线性离子阱中的空间电荷效应

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Space charge effects play important roles in ion trap operations, which typically limit the ion trapping capacity, dynamic range, mass accuracy, and resolving power of a quadrupole ion trap. In this study, a rhombic ion excitation and ejection method was proposed to minimize space charge effects in a linear ion trap. Instead of applying a single dipolar AC excitation signal, two dipolar AC excitation signals with the same frequency and amplitude but 90A degrees phase difference were applied in the x- and y-directions of the linear ion trap, respectively. As a result, mass selective excited ions would circle around the ion cloud located at the center of the ion trap, rather than go through the ion cloud. In this work, excited ions were then axially ejected and detected, but this rhombic ion excitation method could also be applied to linear ion traps with ion radial ejection capabilities. Experiments show that space charge induced mass resolution degradation and mass shift could be alleviated with this method. For the experimental conditions in this work, space charge induced mass shift could be decreased by similar to 50%, and the mass resolving power could be improved by similar to 2 times at the same time.
机译:空间电荷效应在离子阱操作中起着重要作用,离子阱操作通常会限制离子捕获能力,动态范围,质量精度和四极离子阱的分辨能力。在这项研究中,提出了一种菱形离子激发和喷射方法,以最小化线性离子阱中的空间电荷效应。代替施加单个偶极交流激励信号,分别在线性离子阱的x和y方向上施加两个具有相同频率和幅度但相位差为90A度的偶极交流激励信号。结果,质量选择性激发离子将围绕位于离子阱中心的离子云旋转,而不是穿过离子云。在这项工作中,然后将激发离子轴向排出并进行检测,但是这种菱形离子激发方法也可以应用于具有离子径向排出能力的线性离子阱。实验表明,用这种方法可以减轻空间电荷引起的质量分辨率下降和质量偏移。对于这项工作中的实验条件,可以将空间电荷引起的质量偏移降低约50%,同时将质量分辨能力提高约2倍。

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