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多离子电荷提取 (MICE) 用于高通量电荷检测质谱学
Raj A Parikh1, Benjamin E Draper2, Martin F Jarrold1
1Chemistry Department, Indiana University, 800 E Kirkwood Ave, Bloomington, Indiana 47405, United States.
Analytical chemistry
|February 8, 2024
概括
电荷检测质谱 (CD-MS) 现在通过新的多离子电荷提取 (MICE) 方法提供了更可靠的结果. 这种技术即使在频率重叠的情况下也能准确地确定离子电荷,从而提高质量分布的准确性.
科学领域:
- 分析化学 分析化学
- 质谱测量质量谱测量
- 物理化学 物理化学
背景情况:
- 电荷检测质谱 (CD-MS) 是一种单粒子技术,用于确定离子质量与电荷比率 (m/z) 和电荷.
- 离子被困在静电线性离子陷 (ELIT) 中,振荡并产生由快速里埃转换 (FFT) 处理的信号.
- 同时捕获多个离子会增加吞吐量,但可能导致振荡频率重叠,导致电荷确定错误和偏差相对丰度.
研究的目的:
- 开发一种后处理方法,以解决CD-MS中由重叠的离子频率引起的电荷测定错误.
- 提高大规模分布中的相对丰度的准确性,特别是丰富的m/z物种.
- 为了提高CD-MS分析的速度和可靠性.
主要方法:
- 开发了一个统计后处理算法,名为多重离子电荷提取 (MICE).
- MICE通过从高信号测量中恢复单离子信息来赋予频率重叠的离子电荷.
- 使用MICE方法进行CD-MS测量以评估其性能.
主要成果:
- MICE成功地为频率重叠的离子赋值电荷,恢复单离子信息.
- 该方法使相对丰度更适应信号强度,纠正高信号m/z偏差.
- 在使用MICE时,CD-MS测量实现了120离子/秒的速率,m/z偏差最小.
结论:
- MICE显著提高了电荷检测质谱仪的准确性和可靠性.
- 统计方法有效地解决重叠的离子频率,保持准确的相对丰度数据.
- MICE使CD-MS分析更快,更强大,克服了以前方法的局限性.
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