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首页> 外文期刊>ACS Omega >Sources of Nonlinear van’t Hoff Temperature Dependence in High-Performance Liquid Chromatography
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Sources of Nonlinear van’t Hoff Temperature Dependence in High-Performance Liquid Chromatography

机译:高效液相色谱中非线性范特霍夫温度相关性的来源

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摘要

In HPLC, the nonlinear behavior of the retention factor k′ with temperature (dependence of ln k′ on 1/T) can be attributed to the multiple interactions of a unique analyte in the separation process and/or to the existence in solution of multiple forms of the analyte (also leading to different free enthalpies of interaction). In this study, several examples of nonlinear retention–temperature dependence are evaluated for both reversed-phase (RP) and hydrophilic interaction chromatography (HILIC) separations. The potential explanation for nonlinear retention–temperature behavior is evaluated for each example, some caused by multiple interactions in the separation system of a unique analyte and others by multiple forms of the analyte. In cases where the analyte does not have more forms and the separation is based predominantly on one type of interaction (e.g., hydrophobic interaction in RP-HPLC), the dependence is linear, as expected. By studying the changes in the chemical structure of a compound as a function of pH it is possible to decide, in many cases, if a unique form or multiple forms of a compound are present in the solution. The use of this information allows us to determine when the lack of linearity (when present) is caused by multiple interactions in the separation system (for one form of the compound) and when more forms are causing the lack of linearity. The approximation with a quadratic form for the nonlinear dependence has been verified in most cases to be good, and only minor improvements were obtained when using higher polynomial dependencies.
机译:在HPLC中,保留因子k'与温度的非线性行为(ln k'对1 / T的依赖性)可以归因于分离过程中独特分析物的多重相互作用和/或存在于多种溶液中分析物的形式(也导致相互作用的不同自由焓)。在这项研究中,对反相(RP)和亲水作用色谱(HILIC)分离均评估了非线性保留-温度依赖性的几个实例。每个示例都评估了非线性保留-温度行为的潜在解释,其中一些是由独特分析物的分离系统中的多种相互作用引起的,而另一些是由多种形式的分析物引起的。在分析物没有更多形式且分离主要基于一种相互作用(例如RP-HPLC中的疏水相互作用)的情况下,依赖关系是线性的,正如预期的那样。通过研究化合物的化学结构随pH的变化,在许多情况下,可以确定溶液中是否存在化合物的独特形式或多种形式。使用此信息,我们可以确定何时线性度不足(何时存在)是由分离系统中的多种相互作用(对于一种形式的化合物)引起的,以及何时有更多的形式引起线性度不足。在大多数情况下,已经证明了非线性相关性的二次方近似是好的,并且当使用更高的多项式相关性时,仅获得了很小的改进。

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