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采用超临界流体色谱法和溶剂化参数模型,对热固着在硅胶和金属化硅胶上的聚硅氧烷固定相进行了表征。

Characterization of stationary phases based on polysiloxanes thermally immobilized onto silica and metalized silica using supercritical fluid chromatography with the solvation parameter model.

机构信息

Université d'Orléans, Institut de Chimie Organique et Analytique (ICOA), CNRS UMR 7311, B.P. 6759, rue de Chartres, 45067 Orléans Cedex 2, France; Institute of Chemistry, University of Campinas, P.O. Box 6154, 13083-970 Campinas, SP, Brazil.

出版信息

J Chromatogr A. 2013 Nov 8;1315:176-87. doi: 10.1016/j.chroma.2013.09.055. Epub 2013 Sep 19.

Abstract

Stationary phases (SP) prepared by immobilization of polymers on silica or metalized silica are interesting for use in reversed-phase high-performance liquid chromatography (RP-HPLC) due to better protection of residual silanols or Lewis acid sites, as well as ease of preparation. On the other hand, there are no previous reports of the use of such phases in packed column supercritical fluid chromatography (SFC). Fourteen different SPs based on polysiloxanes (phenyl, C1, C8, C14, C18) thermally immobilized onto different supports (silica, titanized silica, zirconized silica) and one chemically bonded and end-capped C18 stationary phase having a doubly zirconized silica support, were characterized with identical SFC conditions (CO2 with 10% of methanol, 25°C, 15.0 MPa backpressure). Characterization was achieved based on retention factors measured for 85 test compounds and linear solvation energy relationships (LSER), namely the solvation parameter model based on Abraham descriptors. The polysiloxane SP were compared to a commercial C18-bonded silica (Kromasil C18), and to the native silica and metalized silica supports to better unravel the effects of stationary phase chemistry on chromatographic behavior. Together, 19 stationary phases were compared. The results highlight the variety of polarities provided by the column set. The polysiloxane backbone contributes significantly to the SP polarity as evidenced by the comparison to a classical alkylsiloxane-bonded SP. Metalization also appears to modify the polar characteristics of the SP, particularly toward basic compounds. Sample applications illustrate the applicability of these SP in SFC to the analysis of compounds of interest to the pharmaceutical and cosmetic industries.

摘要

固定相(SP)通过聚合物在硅胶或金属化硅胶上的固定化制备,在反相高效液相色谱(RP-HPLC)中具有很好的应用前景,因为它可以更好地保护残留的硅醇或路易斯酸位,并且易于制备。另一方面,在填充柱超临界流体色谱(SFC)中,还没有使用这种固定相的报道。本文制备了 14 种不同的基于聚硅氧烷(苯基、C1、C8、C14、C18)的 SP,它们通过热固定在不同的载体(硅胶、钛化硅胶、锆化硅胶)上,以及一种化学键合和端封的 C18 固定相,其载体是具有双重锆化硅胶的支撑物,在相同的 SFC 条件下(CO2 中含有 10%甲醇,25°C,15.0 MPa 背压)进行了表征。通过对 85 种测试化合物的保留因子的测量以及线性溶剂化能量关系(LSER),即基于 Abraham 描述符的溶剂化参数模型,实现了对固定相的表征。将聚硅氧烷 SP 与商业 C18 键合硅胶(Kromasil C18)以及天然硅胶和金属化硅胶载体进行了比较,以更好地揭示固定相化学对色谱行为的影响。总共比较了 19 种固定相。结果突出了该柱组提供的多种极性。聚硅氧烷骨架对 SP 的极性有显著贡献,这可以通过与经典的烷基硅氧烷键合 SP 的比较来证明。金属化也似乎改变了 SP 的极性特性,特别是对碱性化合物。样品应用说明了这些 SP 在 SFC 中对制药和化妆品行业感兴趣的化合物分析的适用性。

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