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线性飞行时间质谱仪中功能波时间滞后聚焦基质辅助激光解吸/电离:提高质量精度。

Functional wave time-lag focusing matrix-assisted laser desorption/ionization in a linear time-of-flight mass spectrometer: improved mass accuracy.

作者信息

Whittal R M, Russon L M, Weinberger S R, Li L

机构信息

Department of Chemistry, University of Alberta, Edmonton, Canada.

出版信息

Anal Chem. 1997 Jun 1;69(11):2147-53. doi: 10.1021/ac961151g.

Abstract

A strength of matrix-assisted laser desorption/ionization (MALDI) mass spectrometry is its ability to analyze mixtures without separation. MALDI mass spectrometers capable of providing a linear mass calibration over a broad mass range should find wide use in these applications. This work addresses issues pertinent to mass measurement accuracy of a time-lag focusing MALDI time-of-flight instrument and presents a new approach to improving mass accuracy by using a functional wave extraction pulse, instead of a square wave, for time-lag focusing. A model is described of an ideal extraction pulse shape that provides constant total kinetic energy for all ions. If total kinetic energy is constant, then there is an exact linear correlation between ion mass and flight time raised to the second power. Using a descending wave extraction pulse, it is demonstrated that mass accuracy of better than 30 ppm using two internal calibrants and better than 70 ppm using external calibrants can be obtained over a 25 ku mass range. The practical aspects of an instrument needed to obtain consistent mass accuracy is discussed. It is found that ion flight time shows a small dependence upon laser flux; flight times increase slightly as the flux increases. But this dependence is much smaller than is observed in continuous-extraction MALDI.

摘要

基质辅助激光解吸/电离(MALDI)质谱的一个优势在于其能够直接分析未经分离的混合物。能够在宽质量范围内提供线性质量校准的MALDI质谱仪在这些应用中应会得到广泛应用。本文探讨了与延时聚焦MALDI飞行时间仪器的质量测量精度相关的问题,并提出了一种新方法,即通过使用函数波提取脉冲而非方波进行延时聚焦来提高质量精度。文中描述了一种理想提取脉冲形状的模型,该模型可为所有离子提供恒定的总动能。如果总动能恒定,那么离子质量与飞行时间的平方之间存在精确的线性关系。使用降波提取脉冲,结果表明,在25 ku的质量范围内,使用两种内标物时质量精度优于30 ppm,使用外标物时质量精度优于70 ppm。本文还讨论了获得一致质量精度所需仪器的实际问题。研究发现,离子飞行时间对激光通量的依赖性较小;随着通量增加,飞行时间略有增加。但这种依赖性远小于在连续提取MALDI中观察到的情况。

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