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A quantitative model of ultraviolet matrix-assisted laser desorption/ionization including analyte ion generation

机译:紫外基质辅助激光解吸/电离的定量模型,包括分析物离子的产生

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A quantitative model of ionization in ultraviolet matrix-assisted laser desorption/ionization (Knochenmuss, R. J. Mass Spectrom. 2002,37,867) is extended to include secondary ion-molecule reactions. Matrix-to-analyte charge-transfer reaction kinetics are described by a hardsphere Arrhenius expression. The activation energy is derived from the reaction exoergicity using a nonlinear free energy relationship. The approach is applied to the specific case of proton-transfer reactions. With no adjustable parameters, the model correctly predicts the existence and characteristics of the matrix and analyte suppression effects, the shapes of the two-pulse time-delayed yield curves, and the dependence of analyte yields on laser fluence, molecular weight, relative concentrations, and reaction exoergicity. [References: 45]
机译:紫外矩阵辅助激光解吸/电离中的电离定量模型(Knochenmuss,R。J. Mass Spectrom。2002,37,867)扩展到包括次级离子分子反应。基质到分析物的电荷转移反应动力学由硬球Arrhenius表达式描述。活化能是使用非线性自由能关系从反应能值得出的。该方法适用于质子转移反应的特定情况。在没有可调整参数的情况下,该模型可以正确预测基质的存在和特征以及分析物抑制效果,两脉冲时间延迟产量曲线的形状以及分析物产量对激光注量,分子量,相对浓度的依赖性,和反应放热。 [参考:45]

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