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迈向有机化合物的电喷雾电离质谱电离效率标度。

Towards the electrospray ionization mass spectrometry ionization efficiency scale of organic compounds.

作者信息

Leito Ivo, Herodes Koit, Huopolainen Merit, Virro Kristina, Künnapas Allan, Kruve Anneli, Tanner Risto

机构信息

University of Tartu, Institute of Chemistry, Jakobi 2, 51014 Tartu, Estonia.

出版信息

Rapid Commun Mass Spectrom. 2008;22(3):379-84. doi: 10.1002/rcm.3371.

Abstract

An approach that allows setting up under predefined ionization conditions a rugged self-consistent quantitative experimental scale of electrospray ionization (ESI) efficiencies of organic compounds is presented. By ESI ionization efficiency (IE) we mean the efficiency of generating gas-phase ions from analyte molecules or ions in the ESI source. The approach is based on measurement of relative ionization efficiency (RIE) of two compounds (B1 and B2) by infusing a solution containing both compounds at known concentrations (C1 and C2) and measuring the mass-spectrometric responses of the protonated forms of the compounds (R1 and R2). The RIE of B1 and B2 is expressed as logRIE(B1, B2) = log[(R1 . C2)/(C1 . R2)]. The relative way of measurement leads to cancellation of many of the factors affecting IE (ESI source design, voltages in the source and ion transport system, solvent composition, flow rates and temperatures of the nebulizing and drying gases). Using this approach an ESI IE scale containing ten compounds (esters and aromatic amines) and spanning over 4 logRIE units has been compiled. The consistency of the scale (the consistency standard deviation of the scale is s = 0.16 logRIE units) was assured by making measurements using different concentration ratios (at least 6-fold concentration ratio range) of the compounds and by making circular validation measurements (the logRIE of any two compounds was checked by measuring both against a third compound).

摘要

本文提出了一种方法,该方法能够在预定义的电离条件下建立一个稳定的、自洽的有机化合物电喷雾电离(ESI)效率定量实验标度。通过ESI电离效率(IE),我们指的是在ESI源中从分析物分子或离子生成气相离子的效率。该方法基于对两种化合物(B1和B2)的相对电离效率(RIE)的测量,通过注入含有已知浓度(C1和C2)的两种化合物的溶液,并测量化合物质子化形式的质谱响应(R1和R2)。B1和B2的RIE表示为logRIE(B1, B2) = log[(R1 . C2)/(C1 . R2)]。这种相对测量方式能够消除许多影响IE的因素(ESI源设计、源和离子传输系统中的电压、溶剂组成、雾化和干燥气体的流速及温度)。使用该方法,已编制了一个包含十种化合物(酯类和芳香胺)且跨越4个logRIE单位的ESI IE标度。通过使用不同浓度比(至少6倍浓度比范围)的化合物进行测量以及进行循环验证测量(通过针对第三种化合物测量任意两种化合物的logRIE来检查),确保了该标度的一致性(该标度的一致性标准偏差为s = 0.16 logRIE单位)。

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