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首页> 外文期刊>Journal of liquid chromatography and related technologies >Prediction of the Gradient Retention Times of Purine Compounds in Reversed Phase High Performance Liquid Chromatography
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Prediction of the Gradient Retention Times of Purine Compounds in Reversed Phase High Performance Liquid Chromatography

机译:反相高效液相色谱中嘌呤化合物的梯度保留时间预测

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Abstract: Various retention models have been developed and adopted to predict the retention behaviors of solutes in high performance liquid chromatography. Although the retention times can be successfully predicted in a gradient elution, it is difficult to predict the fundamental parameters of the eluted peaks, such as the number of theoretical plates, the resolution between neighboring peaks, as well as asymmetry factors. Thus far, the Snyder retention model has widely been used to predict the retention behavior in both isocratic and gradient conditions. However, it has a critical defect in that it cannot closely follow the retention behaviors of solutes when a relatively low content of organic modifier is used in the mobile phase. This is a result of the nonlinear relationship between the logarithm value of the retention factor and the volumetric percentage of organic modifier in the mobile phase. To overcome this shortcoming, a modified retention model was adopted to predict the retention times in several linear gradient conditions. A numerical method that transforms any gradient condition into discrete step gradient conditions was also proposed to predict the retention times in a gradient elution. The model is suitable to apply to nonlinear and multilinear gradient conditions, including actual obtained gradient profiles. Two kinds of organic modifiers, methanol and acetonitrile, were employed, and four purine compounds were used as solutes. The predicted retention times obtained by the modified retention mode! are in good agreement with experimental data in terms of the achieved gradient conditions.
机译:摘要:已经开发出各种保留模型,并采用它们来预测溶质在高效液相色谱中的保留行为。尽管可以通过梯度洗脱成功地预测保​​留时间,但是很难预测洗脱峰的基本参数,例如理论塔板数,相邻峰之间的分辨率以及不对称因素。迄今为止,Snyder保留模型已被广泛用于预测在等度和梯度条件下的保留行为。但是,它有一个严重的缺陷,即当在流动相中使用相对较低含量的有机改性剂时,它不能紧密遵循溶质的保留行为。这是保留因子的对数值与流动相中有机改性剂体积百分比之间非线性关系的结果。为了克服此缺点,采用了改进的保留模型来预测几种线性梯度条件下的保留时间。还提出了将任何梯度条件转换为离散阶梯梯度条件的数值方法,以预测梯度洗脱的保留时间。该模型适用于非线性和多线性梯度条件,包括实际获得的梯度曲线。使用了两种有机改性剂,即甲醇和乙腈,并使用了四种嘌呤化合物作为溶质。通过修改的保留模式获得的预计保留时间!就所达到的梯度条件而言,与实验数据非常吻合。

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