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首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Peak half-width plots to study the effect of organic solvents on the peak performance of basic drugs in micellar liquid chromatography
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Peak half-width plots to study the effect of organic solvents on the peak performance of basic drugs in micellar liquid chromatography

机译:峰半峰图,研究胶束液相色谱中有机溶剂对碱性药物峰性能的影响

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摘要

The addition of the anionic surfactant sodium dodecyl sulphate (SDS) to hydro-organic mixtures of methanol, ethanol, propanol or acetonitrile with water yielded enhanced peak shape (i.e. increased efficiencies and symmetrical peaks) for a group of basic drugs (-blockers) chromatographed with a Kromasil C18 column. The effect can be explained by the thin layer of surfactant associated to the hydrocarbon chain on the stationary phase in the presence of the organic solvents, which covers the free silanols on the siliceous support avoiding their interaction with the cationic basic drugs. These instead interact with the anionic head of the surfactant increasing their retention and allowing a more facile mass transfer. The peak shape behaviour with the four organic solvents (methanol, ethanol, propanol and acetonitrile) was checked in the presence and absence of SDS. The changes in peak broadening rate and symmetry inside the chromatographic column were assessed through the construction of peak half-width plots (linear relationships between the left and right half-widths at 10% peak height versus the retention time). The examination of the behaviour for a wide range of compositions indicated that the effect of acetonitrile in the presence of SDS is different from ethanol and propanol, which behave similarly. Acetonitrile seems to be superior to the alcohols in terms of peak shape, which can be interpreted by the larger reduction in the adsorbed surfactant layer on the C18 column. However, the decreased efficiencies observed at increasing surfactant concentration in the mobile phase should be explained by the reduction in retention times, more than by a change in the stationary phase nature.
机译:将阴离子表面活性剂十二烷基硫酸钠(SDS)添加到甲醇,乙醇,丙醇或乙腈与水的有机混合物中,可得到一组色谱分离的碱性药物(阻滞剂)增强的峰形(即,提高了效率和对称峰)用Kromasil C18色谱柱可以用在有机溶剂存在下固定相上与烃链相关的表面活性剂薄层来解释这种作用,该表面活性剂覆盖了硅质载体上的游离硅烷醇,避免了它们与阳离子碱性药物的相互作用。这些反而与表面活性剂的阴离子头相互作用,增加了它们的保留并允许更容易的质量传递。在存在和不存在SDS的情况下,检查四种有机溶剂(甲醇,乙醇,丙醇和乙腈)的峰形行为。通过构建峰半峰图(在峰高为10%时左右半峰之间的线性关系与保留时间的线性关系)来评估色谱柱内峰展宽速率和对称性的变化。对多种组合物的行为进行的检查表明,存在SDS时乙腈的作用不同于乙醇和丙醇,后者的行为相似。乙腈似乎在峰形方面优于醇,这可以通过C18色谱柱上吸附的表面活性剂层的较大减少来解释。但是,在流动相中增加表面活性剂浓度时观察到的效率降低,应解释为保留时间的减少,而不是固定相性质的改变。

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