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首页> 外文期刊>Bulletin of the Korean Chemical Society >Tracing the Origin of the Anomalous Matrix Suppression in Matrix‐assisted Laser Desorption Ionization and Extending the Linear Dynamic Range During Analyte Quantification
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Tracing the Origin of the Anomalous Matrix Suppression in Matrix‐assisted Laser Desorption Ionization and Extending the Linear Dynamic Range During Analyte Quantification

机译:在基质辅助激光解吸电离过程中追踪异常基质抑制的起源,并扩展分析物定量过程中的线性动态范围

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In the matrix‐assisted laser desorption ionization‐based quantification method developed in this laboratory, a linear calibration curve is constructed by plotting the analyte‐to‐matrix ion abundance ratio as a function of the analyte concentration. As the analyte concentration increases, however, the curve deviates from linearity. Previously, we observed that the occurrence of this deviation correlated with the decrease in the matrix ion signal, or matrix suppression. In this work, we found that saturation of the detector was one of the factors responsible for the above phenomena. As we decreased the detector gain, the upper limit of the linear dynamic range increased by as much as one order of magnitude. Even after a substantial decrease in the detector gain, however, the nonlinearity remained at a high analyte concentration, which we cannot account for at present. The method developed in this work can be useful for the quantitative imaging of analytes in heavily contaminated samples.
机译:在该实验室开发的基于基质辅助激光解吸电离的定量方法中,通过绘制分析物与基质离子的丰度比随分析物浓度的变化绘制线性校准曲线。但是,随着分析物浓度的增加,曲线会偏离线性。以前,我们观察到这种偏离的发生与基质离子信号的减少或基质抑制相关。在这项工作中,我们发现检测器的饱和是造成上述现象的因素之一。随着我们降低检测器增益,线性动态范围的上限增加了一个数量级。但是,即使在检测器增益大幅降低之后,非线性仍然保持在高分析物浓度下,这是我们目前无法解决的。这项工作中开发的方法可用于对严重污染的样品中的分析物进行定量成像。

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