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Retention of Halogenated Solutes on Stationary Phases Containing Heavy Atoms

机译:卤化溶质保留在含有重原子的固定相上

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摘要

To examine the effects of weak intermolecular interactions on solid-phase extraction (SPE) and chromatographic separation, we synthesized some novel stationary phases with a heavy atom effect layer by immobilizing halogenated aromatic rings and hydroxyl groups onto the surface of a hydrophilic base polymer. Using SPE cartridges packed with the functionalized materials, we found that the heavy atom stationary phases could selectively retain halophenols in organic solvents, such as 1-propanol which blocks the hydrogen bonding, or acetonitrile which blocks the π-π interaction. The extraction efficiency of the materials toward the halophenols depended on the dipole moments of phenoxy groups present as functional groups. On the other hand, the extraction efficiency of solutes toward the functional group depended on their molar refractions, i.e., induced dipole moments. The retention of the solutes to the stationary phase ultimately depended on not only strong intermolecular interactions, but also the effects of weak interactions such as the dispersion force.
机译:为了检查弱分子间相互作用对固相萃取(SPE)和色谱分离的影响,我们通过将卤化的芳环和羟基固定在亲水基础聚合物的表面上,合成了一些具有重原子效应层的新型固定相。使用装有功能材料的SPE柱,我们发现重原子固定相可以选择性地将卤代酚保留在有机溶剂中,例如阻止氢键的1-丙醇或阻止π-π相互作用的乙腈。材料对卤代酚的萃取效率取决于作为官能团存在的苯氧基的偶极矩。另一方面,溶质对官能团的提取效率取决于它们的摩尔折射,即感应的偶极矩。溶质在固定相中的保留最终不仅取决于强烈的分子间相互作用,还取决于弱相互作用(如分散力)的影响。

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