在确定离子碰撞横截面的百万分之一准确度方面,使用多通道循环离子移动性
Olivia Critch-Doran1, Kevin Jenkins1, Mahin Hashemihedeshi1
1Department of Chemistry, Memorial University of Newfoundland, 45 Arctic Ave., St. John's, Newfoundland and Labrador A1C 5S7, Canada.
Journal of the American Society for Mass Spectrometry
|March 18, 2024
概括
循环离子流动性 (cIMS) 通过增加离子通道来提高离子流动性和碰撞截面 (CCS) 精度. 这种方法达到百万分之一 (ppm) 的精度,改善了复杂混合物的表征.
科学领域:
- 分析化学 分析化学
- 物理化学 物理化学
背景情况:
- 循环离子移动性 (cIMS) 允许离子在漂移细胞中多次通过,从而增加分离.
- 多次通过对离子移动性和碰撞截面 (CCS) 的测量精度的影响正在调查中.
研究的目的:
- 测试cIMS中多次通过是否提高了离子流动性和衍生TWCCS测量的精度.
- 建立一种方法,以实现TWCCS测量的百万分之一 (ppm) 精度.
主要方法:
- 实验使用各种化合物进行,包括多环芳和药物分子.
- 气色谱气压大气压化学电离和直接输液电喷射电离被采用.
- 分析了增加cIMS细胞中通过次数对漂移时间和TWCCS精度的影响.
主要成果:
- 平均周期漂移时间精度接近百万分之一 (ppm) 的水平,大约100次通过.
- 预计TWCCS精度在100次通过后达到100ppm,在150次通过后<10ppm.
- 经过100次以上的实验,产生了TWCCS值,运行精度在15至117ppm之间.
结论:
- 在cIMS中增加通过次数显著提高了离子移动性和TWCCS测量的精度.
- 这种增强的精度可能是由于减轻空间电荷效应的结果.
- 为分析未知的药物混合物,展示了ppm精度TWCCS测量的实用方法.
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