Gritti Fabrice, Izzo Gary, Schaffer Richard
Waters Corporation, Instrument/Core Research/Fundamentals, and Chemistry R & D, 34 Maple Street, Milford, MA, 01757, USA.
Waters Corporation, Instrument/Core Research/Fundamentals, and Chemistry R & D, 34 Maple Street, Milford, MA, 01757, USA.
J Chromatogr A. 2024 Sep 27;1733:465232. doi: 10.1016/j.chroma.2024.465232. Epub 2024 Aug 21.
The role of the average pore diameter (APD) of 1.7μm Atlantis Premier BEH Particles derivatized with a zwitterionic group (propylsulfobetaine) on the efficiency of their 2.1 × 50 mm hydrophilic interaction liquid chromatography (HILIC) packed columns is investigated experimentally. Van Deemter plots for toluene (neutral, hydrophobic), cytosine (neutral, polar), tosylate (negatively charged), bretylium and atenolol (positively charged) were measured on three HILIC columns packed with BEH Z-HILIC Particles having APDs of 95 Å, 130 Å, and 300 Å. The intraparticle diffusivities of the analytes across these three BEH Z-HILIC Particles were measured by the peak parking method. The experimental data reveal that the slope of the C-branch of the van Deemter plots can be reduced by factors of about 15 for toluene, 2.5 for cytosine, 6 for atenolol, 5 for tosylate, and 14 for bretylium with increasing the APD from 95 Å to 300 Å. This observation is explained by: (1) the reduced amount of the highly viscous water diffuse layer and subsequent increase of the amount of acetonitrile-rich eluent in the mesopores, (2) the localized electrostatic adsorption of the retained analytes onto the zwitterion-bonded BEH Particles, and (3) depletion/excess of the analytes into the water diffuse layer. A general model of intraparticle diffusivity was then proposed to account for the impact of the APD of Z-HILIC Particles on the solid-to-liquid mass transfer resistance of small molecules. The model highlights the relevance of the thickness of the water diffuse layer, the access of the bulk eluent into the mesopore, the localized electrostatic adsorption, and the partitioning constant of the retained analyte between the bulk eluent and the water diffuse layer.
研究了用两性离子基团(丙基磺基甜菜碱)衍生化的孔径为1.7μm的Atlantis Premier BEH颗粒在其2.1×50 mm亲水作用液相色谱(HILIC)填充柱效率方面的作用。在三根填充有孔径分别为95 Å、130 Å和300 Å的BEH Z-HILIC颗粒的HILIC柱上,测量了甲苯(中性、疏水)、胞嘧啶(中性、极性)、甲苯磺酸酯(带负电荷)、溴苄铵和阿替洛尔(带正电荷)的范德姆特曲线。通过峰停方法测量了这三种BEH Z-HILIC颗粒上分析物的颗粒内扩散系数。实验数据表明,随着孔径从95 Å增加到300 Å,甲苯的范德姆特曲线C分支斜率可降低约15倍,胞嘧啶降低2.5倍,阿替洛尔降低6倍,甲苯磺酸酯降低5倍,溴苄铵降低14倍。这一现象可解释为:(1)高粘性水扩散层数量减少,随后中孔中富乙腈洗脱液数量增加;(2)保留的分析物在两性离子键合的BEH颗粒上的局部静电吸附;(3)分析物在水扩散层中的耗尽/过量。然后提出了一个颗粒内扩散系数的通用模型,以解释Z-HILIC颗粒孔径对小分子固液传质阻力的影响。该模型突出了水扩散层厚度、本体洗脱液进入中孔的通道、局部静电吸附以及保留的分析物在本体洗脱液和水扩散层之间的分配常数的相关性。