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首页> 外文期刊>European journal of mass spectrometry >Chemometric approach to evaluate the parameters affecting electrospray: application of a statistical design of experiments for the study of arginine ionization
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Chemometric approach to evaluate the parameters affecting electrospray: application of a statistical design of experiments for the study of arginine ionization

机译:化学计量学方法来评估影响电喷雾的参数:用于精氨酸电离的实验统计设计的应用

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摘要

The effects of different experimental parameters on arginine electrospray ionization have been investigated with response surface modeling design. This chemometric technique allows a study of the effects of selected experimental variables and their interactions on the response of an experiment by performing a limited number of analyses. Six variables were studied: methanol content in the liquid phase, formic acid concentration, electrospray voltage, orifice voltage, mobile phase flow rate, and sheath gas flow rate. Signal abundance and signal-to-noise ratio of the protonated molecule and the protonated dimer were measured from the electrospray mass spectra and these four responses were tested by the design. The factor that exhibits the greatest influence on MH+ abundance is shown to be the liquid flow rate whereas the formation of protonated dimers is mainly controlled by the percentage of methanol in the mobile phase. A strong synergic effect of methanol content and formic acid concentration in the liquid has also been demonstrated in the study of noise level. Moreover, the capabilities of the multicriteria optimization method have been demonstrated through the successful prediction of a set of optimal experimental conditions.
机译:通过响应面建模设计研究了不同实验参数对精氨酸电喷雾电离的影响。这种化学计量学技术可以通过执行有限的分析来研究所选实验变量及其相互作用对实验响应的影响。研究了六个变量:液相中的甲醇含量,甲酸浓度,电喷雾电压,孔口电压,流动相流速和鞘气流速。从电喷雾质谱测量质子化分子和质子化二聚体的信号丰度和信噪比,并通过设计测试这四个响应。对MH +丰度影响最大的因素显示为液体流速,而质子化的二聚体的形成主要受流动相中甲醇的百分比控制。噪音水平的研究也证明了甲醇含量和甲酸浓度在液体中的强协同作用。此外,通过成功预测一组最佳实验条件,证明了多准则优化方法的功能。

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