Wang Jixia, Guo Zhimou, Shen Aijin, Yu Long, Xiao Yuansheng, Xue Xingya, Zhang Xiuli, Liang Xinmiao
Key Lab of Separation Science for Analytical Chemistry, Dalian Institute of Chemical Physics, Chinese Academy of Sciences, Dalian 116023, China.
Key Lab of Separation Science for Analytical Chemistry, Dalian Institute of Chemical Physics, Chinese Academy of Sciences, Dalian 116023, China.
J Chromatogr A. 2015 Jun 12;1398:29-46. doi: 10.1016/j.chroma.2015.03.065. Epub 2015 Mar 30.
Nowadays more and more hydrophilic interaction liquid chromatography (HILIC) columns with diverse functional groups have become commercially available, which pose a challenge to select an appropriate one. However, there is no universal model to provide guidance for selecting HILIC columns. To handle this problem, a retention model named "hydrophilic-subtraction model" was developed to characterize and compare HILIC columns. The hydrophilic-subtraction model, which was designed based on the widely recognized HILIC retention mechanisms including hydrophilic partitioning, hydrogen-bonding and electrostatic interactions, was established by the retention of 41 solutes with various properties on 8 representative HILIC columns. High correlation coefficients (R(2)≥0.990) and small standard deviations (SD≤0.041) indicated that this model correlated effectively the retention with solute descriptors and column parameters. To evaluate reliability of the model, the model was further applied to characterize 15 additional HILIC columns using 41 solutes. The results of multiple linear regression confirmed the significance of the model. The regression coefficients of the model were used to investigate retention mechanisms occurring in different chromatographic systems. Based on these regression coefficients, selectivities of HILIC stationary phases were exhibited intuitively by an angle graph and a spider diagram, which could be used as guidance for researchers to select appropriate columns for HILIC separation. Additionally, a rapid and convenient procedure was proposed for characterizing HILIC columns.
如今,越来越多具有不同官能团的亲水作用液相色谱(HILIC)柱已商业化,这给选择合适的柱子带来了挑战。然而,目前尚无通用模型可为HILIC柱的选择提供指导。为解决这一问题,开发了一种名为“亲水减法模型”的保留模型来表征和比较HILIC柱。亲水减法模型基于广泛认可的HILIC保留机制(包括亲水分配、氢键和静电相互作用)设计,通过41种具有不同性质的溶质在8根代表性HILIC柱上的保留情况建立。高相关系数(R(2)≥0.990)和小标准差(SD≤0.041)表明该模型有效地将保留与溶质描述符和柱参数相关联。为评估该模型的可靠性,进一步使用41种溶质对另外15根HILIC柱进行表征。多元线性回归结果证实了该模型的显著性。该模型的回归系数用于研究不同色谱系统中发生的保留机制。基于这些回归系数,通过角度图和蜘蛛图直观展示了HILIC固定相的选择性,可为研究人员选择合适的HILIC分离柱提供指导。此外,还提出了一种快速便捷的HILIC柱表征方法。