首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Evaluation of on-line solid-phase extraction parameters for hyphenated, high-performance liquid chromatography-solid-phase extraction-nuclear magnetic resonance applications
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Evaluation of on-line solid-phase extraction parameters for hyphenated, high-performance liquid chromatography-solid-phase extraction-nuclear magnetic resonance applications

机译:联用高效液相色谱-固相萃取-核磁共振应用的在线固相萃取参数评估

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The hyphenated technique HPLC-SPE-NMR is proving to be a useful analytical tool for structure elucidation of mixture components, particularly for mass-limited samples where traditional isolation procedures are either time consuming or challenging. In this work, we investigated SPE trapping performance of 25 model natural products within a format corresponding to that of HPLC-SPE-NMR hyphenation. Six different silica-based bonded phases and two polymeric phases were evaluated. The trapping efficiency of polystyrene/divinylbenzene polymers was generally superior compared to silica bonded phases, which showed variable results and performed well only with hydrophobic analytes. Acetonitrile concentration in the loading solvent was critical for trapping on polymeric phase (Resin GP), as small changes of the organic solvent concentration (+/- 3%) could alter the trapping efficiency significantly. Flow rate changes of the loading solvent within 0.8-5.0mL/min did not affect trapping kinetics. Simulation of multiple trapping showed excellent performance of this approach for hydrophobic analytes, and moderate gain for more polar analytes that do not trap quantitatively in a single trapping step. Determination of 50% breakthrough levels by frontal chromatography analysis showed feasibility of accumulation of analyte amounts corresponding to about 0.5 mu mol (10 mm x 2 mm i.d. Resin GP cartridge). (c) 2007 Elsevier BX All rights reserved.
机译:HPLC-SPE-NMR的联用技术已被证明是用于阐明混合物成分的结构的有用分析工具,尤其是对于质量受限的样品,传统的分离步骤既费时又费力。在这项工作中,我们以与HPLC-SPE-NMR联用相对应的格式研究了25种模型天然产物的SPE捕集性能。评价了六个不同的基于二氧化硅的键合相和两个聚合物相。与硅胶键合相相比,聚苯乙烯/二乙烯基苯聚合物的捕获效率通常更高,后者表现出可变的结果,并且仅在疏水性分析物的情况下表现良好。负载溶剂中的乙腈浓度对于捕集在聚合物相(树脂GP)上至关重要,因为有机溶剂浓度的微小变化(+/- 3%)会显着改变捕集效率。加载溶剂的流速在0.8-5.0mL / min范围内变化不会影响捕获动力学。多重捕获的仿真表明,该方法对于疏水性分析物具有出色的性能,对于在单个捕获步骤中未进行定量捕获的极性较大的分析物,则具有中等的增益。通过正面色谱分析确定50%的突破水平表明了积累相当于约0.5μmol(10mm×2mm i.d.Resin GP GP)的分析物量的可行性。 (c)2007 Elsevier BX保留所有权利。

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