首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Retention and selectivity effects caused by bonding of a polar urea-type ligand to silica: A study on mixed-mode retention mechanisms and the pivotal role of solute-silanol interactions in the hydrophilic interaction chromatography elution mode
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Retention and selectivity effects caused by bonding of a polar urea-type ligand to silica: A study on mixed-mode retention mechanisms and the pivotal role of solute-silanol interactions in the hydrophilic interaction chromatography elution mode

机译:极性脲型配体与二氧化硅键合引起的保留和选择性效应:混合模式保留机理和溶质-硅烷醇相互作用在亲水相互作用色谱洗脱模式中的关键作用的研究

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The separation properties of five silica packings bonded with 1-[3-(trimethoxysilyl)propyl]urea in the range of 0-3.67μmolm~(-2) were investigated in the hydrophilic interaction chromatography (HILIC) elution mode. An increase of the ligand surface density promoted retention of non-charged polar compounds and even more so for acids. An opposite trend was observed for bases, while the amphoteric compound tyrosine exhibited a U-shaped response profile. An overall partitioning retention mechanism was incompatible with these observations; rather, the substantial involvement of adsorptive interactions was implicated. Support for the latter was provided by column-specific changes in analyte retention and concomitant selectivity effects due to variations of salt concentration, type of salt, pH value, organic modifier content, and column temperature. Silica was more selective for separating compounds differing in charge state (e.g. tyramine vs. 4-hydroxybenzoic acid), while in cases where structural differences of solutes resided in non-charged polar groups (e.g. tyramine vs. 5-hydroxydopamine, nucleoside vs. nucleobase) more selective separations were obtained on bonded phases. Hierarchical cluster analysis of the home-made urea-type and three commercial amide-type bonded packings evinced considerable differences in separation properties. The present data emphasise that the role of the packing material under HILIC elution conditions is hardly just the polar support for a dynamic coating with a water-enriched layer. Three major retention mechanisms are claimed to be relevant on bare silica and the urea-type bonded packings: (i) HILIC-type partitioning, (ii) HILIC-type weak adsorption such as hydrogen bonding between solutes and ligands or solutes and silanols (potentially influenced by individual degrees of solvation, salt bridging, etc.), (iii) strong electrostatic (ionic) solute-silanol interactions (attractive/repulsive). Even when non-charged polar bonded phases are used, solute-silanol interactions should not be discounted, which makes them a prime parameter to be characterised by HILIC column tests. Multi/mixed-mode type separations seem to be common under HILIC elution conditions, associated with a great deal of selectivity increments. They are accessible and controllable by a careful choice of the type of packing, the mobile phase composition, and the temperature.
机译:在亲水相互作用色谱(HILIC)洗脱模式下,研究了与1- [3-(三甲氧基甲硅烷基)丙基]脲键合的5种硅胶填料在0-3.67μmolm〜(-2)范围内的分离性能。配体表面密度的增加促进了不带电荷的极性化合物的保留,甚至对酸也是如此。对于碱基,观察到相反的趋势,而两性化合物酪氨酸显示出U形的响应曲线。总体分区保留机制与这些观察结果不兼容;相反,牵涉到吸附相互作用的大量参与。后者的支持是由于盐浓度,盐类型,pH值,有机改性剂含量和柱温的变化而导致的分析物保留柱特异性变化和随之而来的选择性效应提供的。硅胶对分离电荷状态不同的化合物(例如酪胺与4-羟基苯甲酸)的选择性更高,而在溶质的结构差异位于不带电荷的极性基团(例如酪胺与5-羟基多巴胺,核苷与核碱基)的情况下)在键合相上获得了更高的选择性分离。自制尿素型和三种商品酰胺型粘合填料的分层聚类分析表明,分离性能存在很大差异。目前的数据强调了填料在HILIC洗脱条件下的作用不仅仅只是具有富水层的动态涂料的极性载体。据称,三种主要的保留机制与裸露的二氧化硅和尿素型键合填料有关:(i)HILIC型分配,(ii)HILIC型弱吸附,例如溶质与配体或溶质与硅烷醇之间的氢键结合(可能受各个溶剂化程度,盐桥等的影响,(iii)强烈的静电(离子)溶质-硅烷醇相互作用(有吸引力/排斥)。即使使用不带电荷的极性键合相,也不应降低溶质与硅烷醇的相互作用,这使其成为通过HILIC柱测试表征的主要参数。在HILIC洗脱条件下,多/混合模式类型的分离似乎很常见,并伴随着大量的选择性增加。通过仔细选择填料类型,流动相组成和温度,可以方便地控制它们。

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