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首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >RETENTION CHARACTERISTICS OF OCTADECYLSILOXANE-BONDED SILICA AND POROUS POLYMER PARTICLE-LOADED MEMBRANES FOR SOLID-PHASE EXTRACTION
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RETENTION CHARACTERISTICS OF OCTADECYLSILOXANE-BONDED SILICA AND POROUS POLYMER PARTICLE-LOADED MEMBRANES FOR SOLID-PHASE EXTRACTION

机译:十八烷基硅氧烷键合二氧化硅和固相萃取的多孔聚合物颗粒的保留特性

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Forced-flow planar chromatography was used to determine the kinetic and retention properties of an octadecylsiloxane-bonded, silica-based, particle-loaded membrane used for solid-phase extraction. The sorbent was heavily loaded with bended phase resulting in a small intraparticle porosity. The large plate height and flow resistance indicates a heterogeneous particle size distribution for the membrane with a significant fraction of below average size particles. The hydrophobicity and silanophilic indexes and system constants in the solvation parameter model indicate similar retention properties to a common octadecylsiloxane-bonded silica cartridge sorbent under identical mobile phase conditions. The dimensional instability of a porous polymer particle-loaded membrane prevented its evaluation by forced-flow planar chromatography using the overpressured development chamber. Breakthrough volumes were determined for the porous polymer membrane under typical sample processing conditions for a number of solutes with varied properties and fitted to a solvation parameter model. A comparison to data previously obtained for an octadecylsiloxane-bonded, silica- based, particle-loaded membrane (Bakerbond) indicated that ease of cavity formation favors retention by the octadecylsiloxane-bonded silica particle-loaded membrane for non-polar and weakly polar analytes compared to the porous polymer particle-loaded membrane. Significantly larger breakthrough volumes, however, are obtained on the porous polymer particle-loaded membrane for polar analytes. The porous polymer sorbent competes more effectively with water in dipole-type interactions and as a hydrogen-bond acid. A solvent effect is speculatively suggested as the origin of the porous-polymer sorbent's favorable retention of hydrogen-bond bases compared to the octadecylsiloxane-bonded, silica-based, material. [References: 25]
机译:使用强制流动平面色谱法确定用于固相萃取的十八烷基硅氧烷键合的,基于二氧化硅的,负载颗粒的膜的动力学和保留特性。吸附剂充满了弯曲相,导致较小的颗粒内部孔隙率。大的板高度和流动阻力表明该膜具有不均一的粒径分布,其中大部分颗粒低于平均粒径。溶剂化参数模型中的疏水性和亲硅性指数以及系统常数表明,在相同的流动相条件下,保留特性与普通的十八烷基硅氧烷键合的硅胶柱吸附剂相似。负载有多孔聚合物颗粒的膜的尺寸不稳定性阻止了使用超压显影室的强制流动平面色谱法对其进行评估。在典型的样品处理条件下,测定了多孔聚合物膜的穿透体积,分析了许多性质各异的溶质,并拟合了溶剂化参数模型。与先前通过十八烷基硅氧烷键合的二氧化硅基颗粒负载膜(Bakerbond)获得的数据进行比较表明,与非极性和弱极性分析物相比,容易形成腔有利于十八烷基硅氧烷键合的二氧化硅颗粒负载膜的保留到多孔聚合物颗粒负载膜。然而,在多孔聚合物颗粒负载膜上获得了更大的突破体积,用于极性分析物。多孔聚合物吸附剂可与水以偶极型相互作用和氢键酸形式更有效地竞争。据推测,与十八烷基硅氧烷键合的二氧化硅基材料相比,多孔聚合物吸附剂对氢键合碱的良好保留是溶剂作用的起源。 [参考:25]

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