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首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >A nonlinear electrophoretic model for PeakMaster: Part III. Electromigration dispersion in systems that contain a neutral complex-forming agent and a fully charged analyte. Theory
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A nonlinear electrophoretic model for PeakMaster: Part III. Electromigration dispersion in systems that contain a neutral complex-forming agent and a fully charged analyte. Theory

机译:PeakMaster的非线性电泳模型:第三部分。系统中包含中性复合物形成剂和充满电的分析物的电迁移分散体。理论

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摘要

We introduce a new nonlinear electrophoretic model for complex-forming systems with a fully charged analyte and a neutral ligand. The background electrolyte is supposed to be composed of two constituents, which do not interact with the ligand. In order to characterize the electromigration dispersion (EMD) of the analyte zone we define a new parameter, the nonlinear electromigration mobility slope, S_(EMD,A). The parameter can be easily utilized for quantitative prediction of the EMD and for comparisons of the model with the simulated and experimental profiles. We implemented the model to the new version of PeakMaster 5.3 Complex that can calculate some characteristic parameters of the electrophoretic system and can plot the dependence of S_(EMD,A) on the concentration of the ligand. Besides S_(EMD,A), also the relative velocity slope, SX, can be calculated. It is commonly used as a measure of EMD in electrophoretic systems. PeakMaster 5.3 Complex software can be advantageously used for optimization of the separation conditions to avoid high EMD in complexing systems. Based on the theoretical model we analyze the S_(EMD,A) and reveal that this parameter is composed of six terms. We show that the major factor responsible for the electromigration dispersion in complex-forming electrophoretic systems is the complexation equilibrium and particularly its impact on the effective mobility of the analyte. To prove the appropriateness of the model we showed that there is a very good agreement between peak shapes calculated by PeakMaster 5.3 Complex (plotted using the HVLR function) and the profiles simulated by means of Simul 5 Complex. The detailed experimental verification of the new mode of PeakMaster 5.3 Complex is in the next part IV of the series.
机译:我们为带有完全荷电的分析物和中性配体的复杂形成系统引入了一种新的非线性电泳模型。假定背景电解质由不与配体相互作用的两种成分组成。为了表征分析物区域的电迁移分散度(EMD),我们定义了一个新参数,即非线性电迁移迁移率斜率S_(EMD,A)。该参数可轻松用于EMD的定量预测以及将模型与模拟和实验曲线进行比较。我们将模型应用于新版本的PeakMaster 5.3 Complex,该模型可以计算电泳系统的某些特征参数,并可以绘制S_(EMD,A)对配体浓度的依赖性。除了S_(EMD,A),还可以计算相对速度斜率SX。它通常用作电泳系统中EMD的量度。 PeakMaster 5.3复杂软件可以有利地用于优化分离条件,以避免复杂系统中的高EMD。基于理论模型,我们分析了S_(EMD,A)并揭示了该参数由六个项组成。我们表明,在络合物形成电泳系统中负责电迁移分散的主要因素是络合物平衡,尤其是其对分析物有效迁移率的影响。为了证明该模型的适用性,我们证明了PeakMaster 5.3 Complex(使用HVLR函数绘制)计算出的峰形与Simul 5 Complex所模拟的谱线之间有很好的一致性。该系列的下一部分将对PeakMaster 5.3 Complex新模式进行详细的实验验证。

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